I Am HPC Archives • SC23 https://sc23.supercomputing.org/category/i-am-hpc/ Thu, 04 Jan 2024 13:43:24 +0000 en-US hourly 1 https://sc23.supercomputing.org/wp-content/uploads/2022/10/cropped-sc23_favicon_01@2x-32x32.png I Am HPC Archives • SC23 https://sc23.supercomputing.org/category/i-am-hpc/ 32 32 Bridging the Digital Divide: The Remarkable Journey of Roscoe C. Giles, III https://sc23.supercomputing.org/2024/01/bridging-the-digital-divide-the-remarkable-journey-of-roscoe-c-giles-iii/ Thu, 04 Jan 2024 12:48:57 +0000 https://sc23.supercomputing.org/?p=28085 Roscoe C. Giles, III, a prominent physicist and computer engineer, serves as the Deputy Director of Boston University’s Center for Computational Science. He holds a joint appointment in physics and is a professor of computer and electrical engineering at Boston University College of Engineering. Giles is known for his pioneering work in advanced computer architectures, distributed and parallel computing, and computational science.

His impressive career includes being the first African American to earn a doctorate in theoretical physics from Stanford University. Since then, Giles has held key roles, such as SC Conference General Chair in 2002 and serving on the Boston University Board of Trustees. He also has been recognized with honors, including the A. Nico Habermann Award; multiple teaching awards; and is an American Association for the Advancement of Science Fellow (2019). He is a driving force in promoting diversity and excellence in computing research and leads the SC23 Keynote and Invited Talks programs, exemplifying his advocacy.

Humanizing Technology

In this I Am HPC profile, Giles shares his unique perspective, providing insights into his work as a prominent physicist and computer engineer, as well as his passionate mission to humanize technology and bridge the digital divide.

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Roscoe C. Giles, III

Professor, Boston University

Q: What single event most made you realize you wanted a career in HPC/computing?

Giles: Probably not really a single event but a sequence of high points spread over time. My first introduction to a computer was an IBM 1620 when I was in high school around 1963 or 1964. We programmed it in FORTRAN II. Everything (including the two-pass compiler) was on cards. Still, it did amazing things.

Working as a graduate student around 1973, I studied string-like models and used computer simulations (this time an IBM 360/91 at SLAC) to compute their oscillation modes and produce (simple) graphics.

My turning point (from physics to computing) arose with early massively parallel computers, particularly the Connection Machine, which we had at Boston University around 1990. I loved programming it in LISP (list processing) and mapping problems onto its hypercube communication network.

Q: What do you consider your biggest contribution to the HPC/computing community?

Giles: Not so sure. I did early work on massively parallel computer simulations in QCD (quantum chromodynamics) and molecular dynamics back when 1 million particles was considered a large problem. I also helped lead education and outreach efforts for one of the NSF (National Science Foundation) supercomputing partnerships in the late ’90s.

Another set of community impacts came from my work on the DOE (Department of Energy) Advanced Scientific Computing Advisory Committee, which I served on starting at its founding in 2000 and through the start of the exascale computing initiative. I served on the Computational Science Graduate Fellowship steering committee for many years.

Finally, I chaired the SC02 conference over 20 years ago.

I would like to think that in some of these roles, I helped encourage Black and other underrepresented groups of people to engage with computing and HPC.

Q: In the past 35 years, what is the most significant overlooked breakthrough that has impacted the field in your eyes?

Giles: The vast improvement in software tools and the level of software engineering in the best of HPC systems. We are much better than we used to be in building composable, maintainable, testable software—and still probably have a long way to go :-))

Q: What would you like to see change about, within, or among the HPC/computing community?

Giles: The community needs to be more culturally diverse and embrace a wider range of perspectives, ideas, and problems. I love the theme of this year’s SC, which draws our attention to the human dimensions of our work and efforts.

Q: What would do you look forward to regarding the HPC/computing community?

Giles: As you probably have gathered, I have been around for a long time in the HPC community. I am very encouraged and proud of the current and future generations I see coming up in our community. I look forward to the ideas they will generate and the directions they will take us.

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Advancing HPC Through Mentorship and Diversity https://sc23.supercomputing.org/2024/01/advancing-hpc-through-mentorship-and-diversity/ Thu, 04 Jan 2024 12:47:14 +0000 https://sc23.supercomputing.org/?p=28071 Dr. Sally Ellingson is a prominent computational scientist, bridging the domains of computational biology and high-performance computing. She holds dual undergraduate degrees in computer science and mathematics from Florida Institute of Technology and completed her Doctorate at the University of Tennessee and Oak Ridge National Laboratory with a focus on computational biology.

Currently, Ellingson serves as an assistant professor at the University of Kentucky College of Medicine, where she also manages High-Performance Computing Services at the Markey Cancer Center. Her research combines simulations, big data analysis, and machine learning to improve drug binding predictions.

Beyond her research, Ellingson is committed to mentoring and outreach, particularly for underrepresented groups in the field of computational sciences. Her involvement in the SC Conference, dating back to 2014, has been extensive. She has contributed significantly to various programs within the conference, such as the Broader Engagement program, Student Volunteer program, Mentor-Protégé program, and School Tours. Currently serving as the Students@SC Chair, her volunteer efforts have had a lasting impact on the community.

Momentum & Mentoring

In Ellingson’s I Am HPC blog, she emphasizes the importance of maintaining the momentum of diversity and inclusion efforts within the HPC community and underscores the significance of mentoring the next generation to ensure a more inclusive and diverse environment.

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Sally ellingson

Assistant Professor, Division of Biomedical Informatics, UK College of Medicine

Q: What single event most made you realize you wanted a career in HPC/computing?

Ellingson: Touring the computer room at Oak Ridge National Laboratory when I was interviewing for graduate school. 

Q: What do you consider your biggest contribution to the HPC/computing community?

Ellingson: My volunteer work through the SC Conference.

Q: In the past 35 years, what is the most significant overlooked breakthrough that has impacted the field in your eyes?

Ellingson: I’ve been pleased to witness the growing emphasis on diversity and inclusion within the Supercomputing conference and the HPC community. During my grad school days, I participated in a program aimed at enhancing diversity and fostering a sense of community within the conference. While it was disappointing to see it discontinued, I’m proud to see these initiatives gaining momentum. Today, inclusivity stands as a top-tier priority for the conference, influencing every facet of the event. This underscores the commitment to cultivating a diverse workforce and nurturing inclusive work environments to sustain the vibrancy and diversity of our community.

Q: What would you like to see change about, within, or among the HPC/computing community?

Ellingson: As we move forward, it’s crucial that we maintain our momentum and remain steadfast in our commitment to DEI initiatives. Additionally, we should not lose sight of the significance of mentoring students. This investment in the next generation is pivotal for the continued growth and strength of our community. By providing guidance and support to emerging talent, we not only contribute to their personal development but also fortify the collective knowledge and capabilities of our community. Together, we can ensure a more inclusive, diverse, and thriving environment for all.

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First Former WINS Awardee Named SC24 SCinet Chair https://sc23.supercomputing.org/2023/12/first-former-wins-awardee-named-sc24-scinet-chair/ Thu, 28 Dec 2023 14:34:09 +0000 https://sc23.supercomputing.org/?p=28157 An IT professional experienced in systems administration and network operations with a special interest in IT security. Wide range of experience working with multiple system infrastructures and technologies. Effectively manages multiple projects with differing timelines and priorities, requiring collaboration with a wide range of internal and external customers. Self-motivated quick learner who takes ownership of her work.
Angie Asmus has been an IT professional with Colorado State University for over 13 years, focusing on IT security and network operations. Her journey has led her to become involved with SCinet, the most powerful and advanced high-speed network on Earth (for the week of SC), built to serve the annual SC Conference. This network is a considerable undertaking – built over a month and then taken down in a day. Angie Asmus, a key member of the team, has been selected to be the SC24 SCinet Chair, where she will lead a team of over 200 volunteers and 34 contributing organizations.

A Role Model for Success

Angie’s IT background and journey in a male-dominated field make her a role model for women in tech, particularly in Colorado. We believe her story could inspire countless young women considering careers in the tech sector.

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Angie Asmus

Manager of Network and Security Operations, Colorado State University

Q: What single event most made you realize you wanted a career in HPC/computing?

Asmus: I was first introduced to HPC/computing while attending the SC Conference in 2016. At the time, I was a network engineer contributing to SCinet, where I played a role in constructing the high-performance network for the conference. This experience broadened my perspective on HPC and exposed me to the diverse career paths within both HPC and networking. Since then I have remained a part of the HPC community by attending the conference and participating in SCinet, working with some of the best engineers who support HPC networks.

Q: What do you consider your biggest contribution to the HPC/computing community?

Asmus: My most significant impact on the HPC/computing community lies in my dedication to fostering diversity and supporting related programs. In 2016, I became a WINS (Women in IT Networking at SC) awardee, marking the beginning of my ongoing involvement in this valuable initiative. WINS addresses the acknowledged diversity gap in HPC and networking, taking intentional steps to support a varied group of SCinet participants. As the SC24 SCinet Chair, I am actively advancing diversity efforts, particularly in advocating for a diverse representation of women in leadership positions.

Q: In the past 35 years, what is the most significant overlooked breakthrough that has impacted the field in your eyes?

Asmus: The strides made in the past 35 years have been remarkable, but one often overlooked breakthrough that has significantly impacted the field is the increasing recognition of the value of diversity. While technological advancements grab the headlines, the acknowledgment that diverse perspectives drive innovation is a game-changer. Embracing a variety of voices, backgrounds, and experiences has not only enriched the field socially but has also proven to be a catalyst for groundbreaking ideas and solutions. It’s a breakthrough that goes beyond algorithms and processors, shaping a more inclusive and dynamic future for computing.

Q: What would you like to see change about, within, or among the HPC/computing community?

Asmus: As we move forward, it’s crucial that we maintain our momentum and remain steadfast in our commitment to DEI initiatives. Additionally, we should not lose sight of the significance of mentoring students. This investment in the next generation is pivotal for the continued growth and strength of our community. By providing guidance and support to emerging talent, we not only contribute to their personal development but also fortify the collective knowledge and capabilities of our community. Together, we can ensure a more inclusive, diverse, and thriving environment for all.

Q: What would you like to see change about, within, or among the HPC/computing community?

Asmus: I currently hold the position of the manager of network and security operations at Colorado State University and am also serving as the Interim Director of Network & Telecommunications. My involvement with SCinet began at SC16, where I participated as a WINS awardee, contributing to the construction of the conference network. Since then, I’ve been an active participant in SCinet every year. The honor of being chosen as the SCinet Chair for SC24 is especially significant, as I am the first WINS awardee to assume this role where I will be leading a team of exceptional volunteer network engineers to create the fastest and most powerful volunteer network for SC24.

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Casey Foulds Has Made the SC Conference Her Passion Project https://sc23.supercomputing.org/2023/12/casey-foulds-has-made-the-sc-conference-her-passion-project/ Thu, 28 Dec 2023 14:33:24 +0000 https://sc23.supercomputing.org/?p=28138 Currently an Enterprise Project Manager with The University of Texas at Dallas’ Office of Information Technology, Casey Foulds is all about keeping institutions organized and on track. As a certified Project Management Professional (meaning she can lead projects in almost any industry) and with a degree in political science and government, she also knows a thing or two about managing multiple, sometimes conflicting, projects along with the personalities who are part of them. 

For more than five years, Foulds has been an integral part of the SC Conference, especially with SCinet. As SCinet Management Team Executive Director (starting in 2020) and Project Management Team Chair (2018-2020), she has led efforts to coordinate the network’s project managers across all teams and direct activities for nearly 200 program volunteers annually. This year, Foulds brought her pr

Planning Committee Skills

Casey’s connection to the SC Conference is just one thing that makes her proud to say, “I Am HPC.”

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Casey Foulds

Enterprise Project Manager, The University of Texas at Dallas

Q: What single event most made you realize you wanted a career in HPC/computing?

Foulds: I was invited to project manage the XNet group [SCinet experimental network] to help drive cutting-edge network projects for SC18, and I was hooked!

Q: What do you consider your biggest contribution to the HPC/computing community?

Foulds: I have served on various committees with SCinet and the SC Committee in both project management and management roles.

Q: What would you like to see change about, within, or among the HPC/computing community?

Foulds: Waiting on the next big, featured thing. I can’t say what that [thing] is because I am not a subject matter expert, but I know that change drives innovation.

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Director of the Barcelona Supercomputing Center Is an Exceptional HPC Leader https://sc23.supercomputing.org/2023/12/director-of-the-barcelona-supercomputing-center-is-an-exceptional-leader-in-hpc/ Sat, 23 Dec 2023 13:59:35 +0000 https://sc23.supercomputing.org/?p=28102 Mateo Valero is a professor of computer architecture at the Universitat Politècnica de Catalunya, now called BarcelonaTech, and Founding Director of the Barcelona Supercomputing Center. In his decades-long career focusing on high-performance computing (HPC) architectures, he has published approximately 700 papers, given more than 800 invited talks, and helped organize more than 300 international conferences. 

In recognition for his many years of dedication to HPC, Valero was awarded the HPCwire Readers’ Choice Award in 2020 for his “exceptional leadership in HPC” and for being “the driving force behind the renaissance of European HPC independence.”

Mateo Valero was also a panelist in the I Am HPC Plenary at SC23.

Fostering Global Collaboration

In this I Am HPC profile, Valero gives a look into his history with HPC, as well as where he sees the industry going.

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Mateo Valero

Director, Barcelona Supercomputing Center

Q: What single event most made you realize you wanted a career in HPC/computing?

Valero: The realization that I wanted a career in HPC was sparked when, around 1977-78, I collaborated with my undergraduate students to construct some small-scale (two to four processors) multiprocessor systems featuring 4-8-bit Intel processors and shared memory.

Q: What do you consider your biggest contribution to the HPC/computing community?

Valero: My most significant contribution to the HPC/computing community has been the pioneering work my students and I conducted on Vector Architectures. During a time when the prevailing belief was that pure superscalar processors would render vector architectures obsolete, we defied conventional wisdom. We foresaw that high-performance vector processors would continue to thrive, and this prediction has become a reality today. We also made substantial contributions by bridging the worlds of ILP [instruction-level parallelism] and DLP [data-level parallelism], fostering a productive cross-pollination between these two fields. Our introduction of the concept of “fuzzy computation” evolved into the idea of “reduced data formats,” which has proven immensely valuable in terms of energy and space efficiency while also contributing to the advancement of current AI [artificial intelligence] hardware.

Q: In the past 35 years, what is the most significant overlooked breakthrough that has impacted the field in your eyes?

Valero: Vector architectures, notably those championed by Cray’s pioneering work and followed by other Japanese companies, have been a fundamental—and often an overlooked—breakthrough in the landscape of HPC and supercomputing. I consider them a hidden treasure in high-performance computing with their remarkable energy efficiency, clean semantics, and profound influence on contemporary architectures like GPUs [graphics processing units]. As the world seeks more efficient and powerful computing solutions, the impact of vector architectures continues to be felt, both in the quest for scientific discoveries and the design of innovative hardware.

Q: What would you like to see change about, within, or among the HPC/computing community?

Valero: I envision a transformation in the HPC/computing community, where we harness the power of our exceptional machines, supercomputers, and various instruments to foster global collaboration in addressing critical societal challenges. Issues such as climate change, sustainable energy solutions, and personalized medicine demand collective efforts from diverse institutions. One of the most challenging and promising research areas in this context is the development of a digital twin for the human body. Achieving breakthroughs in this field necessitates an extensive collaboration, where institutions come together and share their valuable resources. By promoting such cooperation, we can accelerate progress and make a significant impact on these pressing issues.

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Pioneering Computational Science and Software Ecosystems https://sc23.supercomputing.org/2023/12/pioneering-computational-science-and-software-ecosystems/ Sat, 23 Dec 2023 13:58:14 +0000 https://sc23.supercomputing.org/?p=28120 Lois Curfman McInnes is a trailblazer in the world of computational science. Based at Argonne National Laboratory, her work revolves around creating scalable numerical libraries and fostering community collaboration for sustainable software ecosystems. Her expertise lies in solving PDE-based applications and optimization problems using the PETSc/TAO library.

Curfman McInnes holds key positions, serving as the Deputy Director for the Software Technology focus area of the DOE Exascale Computing Project and co-leading the IDEAS scientific software productivity project. This project has birthed initiatives like the Better Scientific Software (BSSw) site, BSSw Fellowship Program, and the Extreme-scale Scientific Software Development Kit (xSDK).

With a Ph.D. in Applied Mathematics from the University of Virginia, Curfman McInnes is a SIAM Fellow (2017) and has received numerous honors, including the SIAM/ACM Prize in Computational Science and Engineering (2015). She was also recognized with the Ernest Orlando Lawrence Award (2011) and the R&D 100 Award (2009) for her work on PETSc.

Curfman McInnes’ significant contributions shine through in her featured publications in renowned journals such as Nature Computational Science, ACM Transactions, and SIAM Review. Her pioneering research in optimizing parallelism in numerical software libraries has made a lasting impact.

On Wednesday, November 15, SC23 attendees had the privilege of attending her invited speaker presentation, “Broadening Participation in HPC: Together We Can Change the World.” During this session, she provided a comprehensive overview of workforce initiatives across the HPC community, highlighting opportunities for engagement. McInnes delved into the vital role played by DOE lab staff involved in the ECP Broadening Participation Initiative, as they are addressing DOE’s workforce challenges through a lens that acknowledges the unique needs and culture of high-performance computing.

Progress Though Team-Based Science

Curfman McInnes is a computational science pioneer whose work and leadership have left an indomitable mark on the field. In this I Am HPC profile Lois shares her HPC journey with us.

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Lois Curfman McInnes

Senior Computational Scientist at Argonne National Laboratory

Q: What single event most made you realize you wanted a career in HPC/computing?

Curfman McInnes: During my time as a grad student (in applied math at the University of Virginia), I spent a summer working at Argonne National Lab. This exposure to high-performance computational science and the multidisciplinary culture of DOE labs hooked me; I returned to Argonne as a postdoc … and I continue to be grateful for the opportunity to work in such an exciting field with such terrific colleagues throughout the HPC community.

Q: What do you consider your biggest contribution to the HPC/computing community?

Curfman McInnes: All of my work in HPC has been as part of exciting team-based collaborations. So, I would say that my biggest contribution has been, over time, being a member of a variety of terrific teams. Because “the whole is greater than the sum of its parts” in team-based science, we are making strong progress in advancing scalable algorithms, productive and sustainable scientific software ecosystems, and diverse collaborations needed to tackle next-generation challenges in high-performance computational science.

Q: In the past 35 years, what is the most significant overlooked breakthrough that has impacted the field in your eyes?

Curfman McInnes: As the impact of high-performance computational science has grown tremendously, driving advances throughout science and society, so has the complexity and scope of HPC applications and software technologies. This shift demands intentional work toward software ecosystem approaches for HPC, explicitly considering relationships among diverse HPC contributions. I consider this topic – software ecosystem approaches for HPC – to be an “in-progress” breakthrough, not yet fully realized but with important progress underway by various groups throughout the international HPC community. One example is work in DOE’s Exascale Computing Project, where a robust scientific software ecosystem is supporting a diverse set of applications for scientific discovery.

Q: What would you like to see change about, within, or among the HPC/computing community?

Curfman McInnes: The combined expertise of diverse teams is essential for pursuing new frontiers in HPC. We need to expand partnerships across the HPC community to address the full life cycle of the HPC workforce, including broadening participation of underrepresented groups.

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Uniting the World of High Performance Computing https://sc23.supercomputing.org/2023/11/uniting-the-world-of-high-performance-computing/ Fri, 10 Nov 2023 20:18:05 +0000 https://sc23.supercomputing.org/?p=27706 Dorian C. Arnold, Ph.D. is an Associate Professor at Emory University, specializing in Distributed Systems, Fault-Tolerance, and High Performance Computing (HPC). He holds a diverse academic background with degrees from prestigious institutions, reflecting his holistic approach to computing research.

Dr. Arnold boasts an accomplished career, that includes being recognized as an ACM Distinguished Speaker and an IEEE Senior member, with the honor of receiving two R&D 100 Awards. Dr. Arnold’s commitment to diversity and inclusion is evident through his roles as the General Chair for the 2017 ACM Richard Tapia Celebration of Diversity and the co-founding of “The HPC Pipeline Workshop: Diversifying the HPC Workforce.”He is a researcher, that addresses the challenges of making extremely large computing systems accessible to experts from various domains. Dr. Arnold’s contributions, both academically and in advocacy, mark him as a leader in the field, pushing the boundaries of high-performance computing while ensuring that it remains inclusive and relatable to all. In his role as SC23 General Chair, he has been pivotal in making the Supercomputing Conference (SC) more relatable and inclusive. Drawing inspiration from the “I am Tiger Woods” campaign, which conveyed the message that anyone, regardless of their background, could aspire to greatness just as Tiger Woods did in golf, the “I am HPC” tagline aims to humanize the field of High Performance Computing and ensure it’s accessible to all.”

SC23 General Chair

Now, let’s delve deeper into the world of Dr. Dorian C. Arnold and learn more about his journey, perspectives, and contributions in the realm of High Performance Computing as he answers insightful questions about his career, experiences, and the future of the HPC community.

Dorian C. Arnold

Associate Professor of Computer Science, Emory University

Q: What single event most made you realize you wanted a career in HPC/computing?

Arnold: While studying for my master’s degree at the University of Tennessee, I took a course from Dr. James Plank; his engaging, fun, and effective teaching style sparked my curiosity in computer systems. Dr. Plank later became my M.S. research advisor. While at UTK during a department-wide event, Dr. Jack Dongarra who was already renown at the time, introduced himself to me, a lowly student, and asked me about my interests. I was struck by his humble, welcoming demeanor. My data points were computer systems are cool, HPC is cool, and the people are cool; what more could I ask for!

Q: What do you consider your biggest contribution to the HPC/computing community?

Arnold: I don’t know if it’s my biggest contribution, but perhaps the one that has had the biggest practical impact: during my PhD, I wrote the code for two software systems: MRNet, a highly-configurable software overlay network for large scale data communication and aggregation, and STAT a debugging tool that is built on top of MRNet. Both these codes have been used and still are in use in production mode on supercomputers across the world.

Q: In the past 35 years, what is the most significant overlooked breakthrough that has impacted the field in your eyes?

Arnold: Overlooked? Perhaps high-level programming languages and environments, coupled with compilers, that have helped to make HPC admissible and accessible to a broad range of scientists and engineers, who no longer have to understand all the low-level nuances of these complex systems to develop correct and efficient codes.

Q: What would you like to see change about, within, or among the HPC/computing community?

Arnold: More access, more diversity, more equitable opportunities, more inclusivity — for all definitions of those terms.

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Voices from the SC23 Communications Team https://sc23.supercomputing.org/2023/11/voices-from-the-sc23-communications-team/ Fri, 10 Nov 2023 19:46:39 +0000 https://sc23.supercomputing.org/?p=27677 Join us on a journey to discover the diverse perspectives of the SC23 Communications Team members as they share their personal stories and deep-rooted connections with High-Performance Computing (HPC). From communicators to researchers, their narratives unveil a shared passion for HPC, its transformative potential, and its profound impact on both science and society. In their own words, they explain why they are HPC.

Christine Baissac-Hayden

SC23 Communications, Chair

Why Are You HPC?

In the world of high-performance computing (HPC), I identify as a participant, albeit not in the role of a back-end creator, but I passionately identify with the HPC community and its transformative impact on our daily lives. My passion for the field extends beyond my role as a communicator. Serving as the SC23 Communication Chair, I take great pride in showcasing pioneering leaders and their work, bridging the gap between cutting-edge HPC innovations and their practical applications while fostering collaboration among diverse institutions around the globe.

Since 2016, my commitment to the SC community’s mission has driven me to advocate for its cause. I’ve worked diligently to engage students, spreading awareness and creating a vibrant network within the HPC community. This journey has been deeply fulfilling, enabling me to empower the next generation of HPC enthusiasts and connecting brilliant minds and the broader world through outreach and communication endeavors.

My enthusiasm for HPC goes beyond my role. It stems from the practical benefits I’ve experienced. Back in 2005 when I founded my school in Brest, France, educational materials and curriculum development were arduous tasks. The tools available then were limited, demanding a high level of expertise. Today, HPC has made this process accessible, streamlining content creation, translation and interpretation. I vividly recall the early days of Google Translate and its humorous literal translations. Fortunately, it has come a long way, improving efficiency in tasks that once took hours.

On a personal note, I’m deeply thankful for HPC’s contributions to the medical field, which have been instrumental in developing vaccines and advanced medical equipment that ensure the health and safety of both myself and my loved ones.In essence, I may not be a back-end HPC creator, but I am a passionate HPC advocate, communicator and user. I am HPC.

Charity Plata

SC23 Communications Vice Chair

Why Are You HPC?

For the better part of a decade, I have been steadily more immersed in science, particularly in areas of computational/computer science, data science and applied mathematics. Of late, research areas involving exascale/high-performance computing, large-scale workflows, artificial intelligence/machine learning and quantum computing have permeated that core mix. 

Yet, unlike many who build and use these technologies for seeking solutions to Grand Challenge problems, I am the interested spectator. Better still, I get to be the storyteller, taking in all the innovations, achievements and personalities that make these unique mechanisms so elemental in modern research and detailing the ways they can benefit society. 

Actually, that is my job: communicating the science of computing done by the talented scientists and researchers within the Computational Science Initiative at the Department of Energy’s Brookhaven National Laboratory. I am a part of a gifted team that draws on all of my skills and entrusts me to tell their highly varied, sometimes vastly technical, stories. At times, I can be an editor, reporter, advisor or even a collaborator. Most importantly (to me), among these computing and technical professionals, I am an equal. Whether attending a project meeting, touring a data center or volunteering at the SC Conference, I am welcome, and my contributions are respected and valued. 

This is why I am HPC.

Kevin jackson

SC23 Communications Student Liaison

Why Are You HPC?

Science has always been utterly fascinating to me. Throughout my youth and early career, I found myself gravitating toward stories about humans probing the mystery of the natural world. Early on, I noticed that just about every scientific story of significance eventually relied on computing. 

In 2020, at the heart of the COVID-19 pandemic, I found myself acting as Editor in Chief of Science Node. This publication focused on bringing academic HPC news to average readers—people who love science but lack advanced degrees or decades of experience. The challenge was that HPC is a complex field that can be difficult to explain to the layperson, but this was made easier by the fact that I could find stories from every imaginable scientific discipline that at some point relied on HPC. 

While at Science Node, I covered the use of HPC in everything from climate science to human rights violations. I even got a chance to talk to some of the people directing HPC resources toward drug discovery for the COVID-19 vaccine. When you stop and actually think about it, the magnitude of HPC’s impact on the scientific community is nearly beyond comprehension. 

Humans are tool builders, and I don’t think it’s an overstatement to say that computers are among the most valuable tools that humanity has ever created. That’s why I work so hard to communicate the work HPC scientists do and help ensure they get the funding they need. That’s why I feel so much respect and admiration for the people who dedicate their lives to mastering this complex and intricate technology. 

That’s why I am HPC.

Isaac Lopez

SC23 Communications Team Member

Why Are You HPC?

My journey into the world of HPC began not as a developer or a scientist but as a communicator—a “comms” specialist with a deep interest in advanced technology and its many applications and utilities for making our lives better. From my very first SC Conference in 2000 in Dallas, Texas, I was entranced by the sheer scale and impact of supercomputing, especially its capability to transform society at large. Since then, I’ve committed myself to amplifying the achievements and nuances of this awe-inspiring community through diverse roles in media and marketing.

OmniScale Media, the agency I co-founded, is a testament to my passion for democratizing advanced technologies like HPC and AI. Our mission is to serve technology communities by bridging the gap between groundbreaking innovations and the betterment of society. This sense of purpose has been both professionally fulfilling and personally rewarding. We are grateful to play a role as we watch our clients pioneer solutions that are not only disruptive but also deeply impactful.

A key career highlight has been the opportunity to work alongside brilliant minds in the industry, promoting not just their technological advancements but also the human stories behind them. Each story serves as a building block in a larger narrative that underscores the transformative power of HPC. For example, our work in highlighting the role of HPC technologies and applications in Alzheimer’s disease research, large language modeling, or even national security applications serves as a constant reminder of what humanity can achieve with the right tools and intellectual resources.

So, am I a coder? No. A data scientist? Far from it. But what I am is an evangelist for a technological revolution that promises to redefine the boundaries of human capability and progress. 

And, that’s why I am HPC.

Bruce Loftis

SC23 Communications Team Member

Why Are You HPC?

In the early 1980s, I was at Colorado State University (CSU). I went to a few classes and did a book report. They gave me a Ph.D. and a faculty position. It was very nice of them. While I was wrapping up my degree, CSU brought in a Cyber-205. CSU was the first American university with a supercomputer (although Purdue claims this as well). I got side-tracked into HPC, and I never got back to water resources engineering (whatever that is).

I worked at a collection of universities with HPC systems. Not that I couldn’t keep a job, but universities got new National Science Foundation grants, and I relocated to help start up the centers. I mostly led the user support groups.

For me, it has been a great career. I have been able to play with the most expensive toys, and I helped researchers use these systems to tackle the most challenging science problems.

I am HPC, and HPC is, indeed, an important part of me.

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Narcisse Mbunzama Combats Digital Disinformation in Africa  https://sc23.supercomputing.org/2023/11/narcisse-mbunzama-combats-digital-disinformation-in-africa/ Wed, 01 Nov 2023 12:19:18 +0000 https://sc23.supercomputing.org/?p=26965 Narcisse Mbunzama is an accomplished computer scientist based in Kinshasa, the capital of the Democratic Republic of Congo (DRC). He specializes in artificial intelligence (AI) and cybersecurity and is the founder of Digital Security Group, a research organization in the DRC. His career is marked by significant contributions to AI, blockchain, cybersecurity, and cloud computing.

With his background in computer science, Mbunzama has become a prominent figure in the tech landscape of sub-Saharan Africa, particularly within areas of disinformation analysis, AI/ML, and cybersecurity, and his goal is to drive innovation and digital resilience in the region. He has been instrumental in leading various projects that have advanced AI applications, harnessed blockchain for transformative solutions, enhanced cybersecurity, and leveraged cloud computing for efficiency.

Driving Technological Progress

Mbunzama actively promotes knowledge sharing, mentors emerging talents, and collaborates with local and international stakeholders to drive technological progress in the DRC. Read more to find out how HPC has shaped Mbunzama’s career.

Narcisse Mbunzama

Founder, Digital Security Group

Q: What single event most made you realize you wanted a career in HPC/computing?

Mbunzama: The decision to pursue a career in HPC/computing has been influenced by my participation on a research project that involved heavy computational simulations.

Q: What do you consider your biggest contribution to the HPC/computing community?

Mbunzama: My participation on several projects related to big data and cloud computing, where large-scale data have been processed and analyzed in the Democratic Republic of Congo, are my biggest contributions to the HPC/computing community.

Q: In the past 35 years, what is the most significant overlooked breakthrough that has impacted the field in your eyes?

Mbunzama: Personally, I think that the development of parallel computing concepts—the idea of parallel computing, where multiple processors work together to solve a problem—is foundational to HPC. Innovations in parallel computing architectures, algorithms, and programming paradigms, like MPI and OpenMP, that have been critical in making HPC systems more efficient and scalable, are the most significant innovations in the field.

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A Multifaceted Journey in Computational Science and Leadership https://sc23.supercomputing.org/2023/10/empowering-transformation-a-multifaceted-journey-in-computational-science-and-leadership/ Mon, 30 Oct 2023 14:12:59 +0000 https://sc23.supercomputing.org/?p=26950 Deborah Penchoff is an accomplished professional, currently serving as the Associate Director of the Innovative Computing Laboratory and a Research Assistant Professor at the University of Tennessee (UT). Her impact is reflected in her leadership roles and diverse research focus areas. Since December 2020, as Associate Director, she has played a pivotal role in formulating, executing, and communicating research program directives. Her responsibilities encompass leadership, staff management, proposal development, strategic planning, and project development, often involving internal and external partners in scientific computing endeavors.

In her concurrent role as a Research Assistant Professor in the UT Department of Nuclear Engineering since January 2021, Penchoff’s focus centers on data science and high-performance computing (HPC) applications in radiochemistry. Her research spans exascale computing, artificial intelligence (AI) applications, selective binding optimization for rare earth elements (REEs) and actinides, nuclear forensics, and radiotherapeutics.

Penchoff’s career has been punctuated by impactful roles, such as the Director of the Institute for Nuclear Security Scientific Fellows Program at the UT Howard H. Baker Jr. Center for Public Policy from 2018 to 2020. Here, she harnessed computational protocols to address national security needs and facilitate interdisciplinary collaboration.

Her expertise extends to education, with her former role as Co-Instructor of “Advanced Policy Process and Program Evaluation” at the UT Howard H. Baker Jr. Center for Public Policy in 2020. Penchoff currently is a Fellow of the Baker School of Public Policy and Public Affairs, where she serves in the Center for Energy, Transportation and Environmental Policy and the Center for National Security and Foreign Affairs. She has actively contributed to various professional organizations, including the American Chemical Society (ACS), where she holds multiple leadership positions and chairs committees focused on computational science, data science, and AI applications in nuclear and radiochemistry.

Penchoff’s dedication to fostering diversity, equity, and inclusion (DEI) is evident through her roles on committees and commissions within the university. Her research contributions, encompassing computational science and modeling, and her involvement in DEI efforts have led to numerous publications and awards, including the 2023 UT Tickle College of Engineering Commitment to Inclusive Community Award.

An Influential Figure

Penchoff’s multidimensional roles in leadership, academia, research, and advocacy, including as SC23’s Plenary Productions Chair, underscore her substantial impact across scientific, educational, and professional spheres. Her commitment to advancement and collaboration marks her as an influential figure in the world of computational science and beyond. In this I AM HPC profile, Penchoff articulates a visionary aspiration of unrestricted collaboration across the scientific realm, seeking to transcend barriers and foster unity.

Deborah Penchoff

Associate Director of the Innovative Computing Laboratory and Research Assistant Professor, University of Tennessee (UT)

Q: What single event most made you realize you wanted a career in HPC/computing?

Penchoff: While in graduate school, I was working on a project focused on optimization of separations of REEs and actinides. This was critical to guarantee a national supply of REEs and to develop strategies to bind actinides for applications in national security. Throughout this project, I realized the power of HPC resources and how they could accelerate solution development for these applications. Since then, I have been passionate about developing strategies to connect HPC with research areas that can benefit from HPC’s accelerating capabilities.

Q: What do you consider your biggest contribution to the HPC/computing community?

Penchoff: I think my biggest contribution so far has been to develop protocols to facilitate HPC-driven tools to address needs in radiochemistry.I think my biggest contribution so far has been to develop protocols to facilitate HPC-driven tools to address needs in radiochemistry.

Q: In the past 35 years, what is the most significant overlooked breakthrough that has impacted the field in your eyes?

Penchoff: I have been in this field for a little bit over a decade. I can’t say at this point what may be an overlooked breakthrough from the past 35 years. I certainly look forward to future multidisciplinary advances in the field.

Q: What would you like to see change about, within, or among the HPC/computing community?

Penchoff:  I would like computer scientists and domain scientists to see themselves as part of a large team striving to develop solutions for needs critical in society with local, regional, national, and global scope. Historically, fields developed in defined areas of research, and great advances have been achieved thanks to efforts in each community. Moving forward, I would like for scientists to be part of a larger team with less defined boundaries to create an environment in which everyone can feel that they belong. This would allow everyone to contribute their best efforts to develop solutions that require multidisciplinary expertise.

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Computing for Science: Stephen Harrell Is a Liaison to Discovery https://sc23.supercomputing.org/2023/10/computing-for-science-stephen-lien-harrell-is-a-liaison-to-discovery/ Tue, 24 Oct 2023 16:15:01 +0000 https://sc23.supercomputing.org/?p=26924 Meet Stephen Harrell, a dedicated professional in the field of high-performance computing (HPC) and scientific software. Harrell is currently an Engineering Scientist at the Texas Advanced Computing Center (TACC), where he plays a pivotal role in the HPC Performance and Architectures Group. His primary focus is on developing benchmarking tools and infrastructure for performance analysis.

With a wealth of experience, Harrell’s journey in the realm of computational science and HPC spans over two decades. Prior to joining TACC, he spent more than six years as a Senior Computational Scientist within the Research Computing group at Purdue University. He also boasts a decade of experience in industry Linux system administration.

As a testament to his commitment to the field and dedication to fostering the next generation of computational scientists, Harrell serves as the chair for the ACM SIGHPC Computational and Data Science Fellowship.

Commitment & Dedication

In addition to his professional accomplishments, Harrell has actively participated in the SC Conference for several years, taking on various leadership roles. His extensive involvement in SC demonstrates his dedication to the HPC community and its growth. Notably, he has chaired key committees, including the Best Reproducibility Advancement Award and Tutorials committees. Currently, he is the SC23 Executive Assistant.

In this I AM HPC profile, read more about Harrell’s HPC contributions and how his expertise makes him a valuable asset in the advancement of scientific computing and research.

Stephen Harrell

HPC Engineering Scientist, Texas Advanced Computing Center (TACC)

Q: What single event most made you realize you wanted a career in HPC/computing?

Harrell: I came from an IT/Systems Administration background in industry. I got hooked when I started an academic job 15 years ago and realized I could make more of an impact in the world supporting science. I have been supporting science and engineering in academia ever since.

Q: What do you consider your biggest contribution to the HPC/computing community?

Harrell: I have contributed in small ways many, many times. I think, in general, my contribution is helping scientists learn about our world. I do some computer science research as well, but there is nothing more satisfying for me than supporting new discoveries about our world, our universe, and us.

Q: What would you like to see change about, within, or among the HPC/computing community?

Harrell: I would like to see the different organizations that push HPC forward start to share their own technology, as well as building on others’ work. There is often a push to do something “new” when a good amount of the ideas [generated] in the project-in-planning are implemented somewhere else. We need to reuse this work and collaborate across programs, institutions, agencies, and countries.

It is often more fun to reinvent the wheel. However, we only need so many kinds of wheels. What actually is needed are carts with wheels that anyone can replace.

Learn more about Harrell’s work and contributions on his ORCiD profile

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From SC02 First-Time Attendee to SC23 Technical Program Co-Chair https://sc23.supercomputing.org/2023/10/from-sc02-first-time-attendee-to-sc23-technical-program-co-chair/ Mon, 23 Oct 2023 14:43:33 +0000 https://sc23.supercomputing.org/?p=26893 With an impressive career spanning over 15 years, Dr. Rosa M. Badia, manager of the Workflows and Distributed Computing group at the Barcelona Supercomputing Center (BSC), has garnered recognition as a trailblazing researcher in parallel programming models for multicore and distributed computing, particularly for her contributions to task-based programming models. Badia’s expertise extends to PyCOMPSs/COMPSs, a parallel task-based programming model designed for distributed computing, used to develop complex, heterogeneous workflows that seamlessly integrate high-performance computing, big data, and machine learning.

Badia has been recognized with the Euro-Par Achievement Award in 2019, noting her work on parallel task-based programming models, workflow applications, and systems; the Dona TIC Award 2019 (Academia/Researcher category); and the International Symposium on High-Performance Parallel and Distributed Computing (HPDC) Achievement Award in 2021. In 2023, she was invited to become a member of the Institut d’Estudis Catalans, a private academic, scientific, and cultural institution dedicated to researching Catalan culture, further solidifying her status as a distinguished academic in her field.

As a longtime SC Conference participant, Badia has held diverse roles, including as an exhibitor, tutorial presenter, panelist, workshop organizer, invited speaker, poster author, and Birds of a Feather session organizer. She also has contributed her share of technical papers as both an author and presenter. For SC23, Badia took an even bigger leap by serving as Co-Chair (with Kathryn Mohror of Lawrence Livermore National Laboratory) of the Technical Program. 

Researcher & Volunteer in Parallel

Notably, Badia’s substantial involvement with the SC Conference happens to coincide with her decision to pursue computing as a career. In her I AM HPC profile, Badia shares some of her journey thus far and where she still would like to see the computing research community evolve.   

Rosa M. Badia

Workflows and Distributed Computing Manager, Barcelona Supercomputing Center

Q: What single event most made you realize you wanted a career in HPC/computing?

Badia: One event significantly impacted me and made me want to belong and contribute more to the HPC community. I was already contributing to the European Center of Parallelism in Barcelona (CEPBA), the precursor of the Barcelona Supercomputing Center. At that time, I had the opportunity to attend SC02 in Baltimore—my first SC! I enjoyed the event so much and was so excited about the Technical Program, the Exhibits, and all the components of SC that when I left, I told myself I wanted to be more involved with this community.

Q: What do you consider your biggest contribution to the HPC/computing community?

Badia: During the last 15 years, I have done research on task-based programming models for different target platforms: multicore processors, GPUs, and distributed computing. For example, in SC06, we presented a paper about CellSs, a task-based programming model for the Cell processor. Also, from BSC, we proposed the tasking model, which has been adopted in the OpenMP specification. My recent research focuses more on distributed computing through the PyCOMPSs/COMPSs programming environment and on the development of workflows that combine traditional HPC simulations with artificial intelligence and data analytics. 

Q: In the past 35 years, what is the most significant overlooked breakthrough that has impacted the field in your eyes?

Badia: I am not sure I can identify any overlooked breakthrough. However, multiple innovations have impacted the field in recent years. To mention a few, the appearance of the multicore chips posed large challenges on how applications should be programmed or the heterogeneous architectures (mainly GPUs but also FPGAs). More recently, artificial intelligence has been changing the field a lot and is opening a considerable controversy regarding its impact on traditional modeling and simulation. 

Q: What would you like to see change about, within, or among the HPC/computing community?

Badia: Ideally, I would like [to make] more international collaboration possible. While there are initiatives that try to foster this, in the end, it isn’t easy. I see groups in different regions (United States, Europe, Asia) working on similar topics and sometimes duplicating efforts because there are no common funding instruments that enable real international collaboration. Unfortunately, it is something challenging to achieve since even regions with good political relationships have no programs allowing this collaboration. Another aspect that I will be happy to see change is gender and diversity in general. SC is doing an excellent job promoting it, but, in fact, the numbers in the institutions still show that there is a lot of work to be done. 

Q: What are you most looking forward to at SC23?

Badia: For almost the last two years, I have worked with Kathryn Mohror as Co-Chairs of the SC23 Technical Program. This has involved a committee of more than 500 members in eight program components. Although this has required a great effort from all of us, we are very excited about the forthcoming SC23 and wish for a very successful event. 

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