---
格式版本: 2
标题: "Guided Interest Groups • SC26"
原文链接: "https://sc26.supercomputing.org/students/guided-interest-groups/"
发布日期: "2026-09-04"
发布时间校准状态: "found"
发布时间需复核: "否"
发布时间来源: "rule:local:strict_original_body"
发布时间证据: "Published Time: Fri, 04 Sep 2026 12:05:25 GMT"
发布时间校准原因: "规则确认唯一严格发布时间，来源 local:strict_original_body"
发布时间校准置信度: "high"
发布时间候选数量: 4
发布时间严格候选数量: 1
发布时间原页读取状态: "source template page reused from URL open"
发布时间未找到原因: ""
发布时间校准时间: "2026-09-04T22:05:44+08:00"
发布时间仲裁状态: "skipped"
发布时间仲裁尝试次数: 0
发布时间仲裁耗时毫秒: 0
发现时间: "2026-09-04T22:03:54+08:00"
入库时间: "2026-09-04T14:05:44.650Z"
来源平台: "SC 大会搜索"
搜索渠道: "source_template"
搜索词: "https://sc26.supercomputing.org/?s=AI%20Rack"
匹配关键词:
  - "AI Rack"
  - "AI"
  - "Immersion"
  - "deployment"
  - "performance"
  - "latency"
  - "bandwidth"
  - "GPU"
相关厂家:
  - "NVIDIA"
  - "AMD"
相关专家:
  []
内容类型: "网页"
抓取工具: "Jina Reader"
清洗工具: "Jina Reader Markdown + Defuddle/Readability 正文提取"
原始附件:
  []
AI优质: "否"
AI打分: 29
AI分档: "非优质"
AI质检状态: "不通过"
AI打分理由: "正文为SC26会议学生活动Guided Interest Groups页面，介绍学生分组、日程和负责人，不涉及超节点、AI Rack或机架级AI基础设施，主题不相关；无技术细节、量产部署或路线图信息；虽为官方会议渠道且页面完整，但无业务情报价值，命中『正文不可用/会议活动类』否决。总分29，非优质。"
AI质检模型: "zj-deepseek-v4-flash"
AI质检时间: "2026-09-04T22:33:46+08:00"
AI主题相关性: 1
AI来源权威性: 15
AI新颖性: 3
AI技术细节: 0
AI商业部署信号: 0
AI完整性: 10
AI评分提示词版本: "v17-精简生产版"
AI评分提示词SHA256: "48fb9777f386026761b4873eaff30807694fb11e9b352d7c69bf2dfde750cc7d"
AI评分知识库版本: "knowledge_base_v1-20260819+runtime.89"
AI评分知识库SHA256: "ff54e1479f3e5fb41037cb816bc8f6bdc83e7bcfa466d5fcf32f781220de91c7"
AI评分知识库检索词: "[\"AI Rack\",\"https://sc26.supercomputing.org/?s=AI%20Rack\",\"RAS\",\"GPU\",\"NVIDIA\",\"AMD\",\"Intel\",\"SC26\",\"URL\",\"GMT\",\"sc26.supercomputing.org/all-dates-deadlines\",\"sc26.supercomputing.org\"]"
AI评分知识库命中: "[{\"id\":\"july-correct-0081\",\"title\":\"AAI 2026: 6th Gen AMD EPYC Server CPUs Power the Agentic Data Center\",\"sourceType\":\"labeled_article\",\"time\":\"2026-07\",\"matchedTerms\":[\"RAS\",\"GPU\",\"NVIDIA\",\"AMD\",\"Intel\",\"URL\"],\"rank\":-11.927378122397121},{\"id\":\"july-correct-0012\",\"title\":\"Microsoft to deploy AMD Helios rackscale solution to support inference workloads and Azure services\",\"sourceType\":\"labeled_article\",\"time\":\"2026-07\",\"matchedTerms\":[\"AI Rack\",\"RAS\",\"GPU\",\"AMD\",\"URL\"],\"rank\":-11.070812210670162},{\"id\":\"runtime-7aadc05d024a3a525d014ae9\",\"title\":\"MTIA 300: Meta’s First Training Chip with Built-in NICs and Communication-Offloading Engines\",\"sourceType\":\"ai_excellent_article\",\"time\":\"2026-08-24\",\"matchedTerms\":[\"RAS\",\"GPU\",\"AMD\",\"Intel\",\"SC26\",\"URL\",\"sc26.supercomputing.org\"],\"rank\":-10.705088297936829},{\"id\":\"july-correct-0026\",\"title\":\"The Rackscale AI System Roadmaps That AMD Is Using To Chase Money\",\"sourceType\":\"labeled_article\",\"time\":\"2026-07\",\"matchedTerms\":[\"RAS\",\"GPU\",\"NVIDIA\",\"AMD\",\"Intel\",\"URL\"],\"rank\":-10.289555449848006},{\"id\":\"july-correct-0034\",\"title\":\"AMD Fires Back at Nvidia with Helios AI System, Epyc CPUs\",\"sourceType\":\"labeled_article\",\"time\":\"2026-07\",\"matchedTerms\":[\"RAS\",\"GPU\",\"NVIDIA\",\"AMD\",\"Intel\",\"URL\"],\"rank\":-10.213730167973361}]"
采集批次: "2026年9月4日21点16分50秒"
采集批次ID: "20260904-211650-d3777cfe"
去重键: "https://sc26.supercomputing.org/students/guided-interest-groups"
---

Title: Guided Interest Groups • SC26

URL Source: https://sc26.supercomputing.org/students/guided-interest-groups/

Published Time: Fri, 04 Sep 2026 12:05:25 GMT

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[Home](https://sc26.supercomputing.org/)[Students@SC](https://sc26.supercomputing.org/students/)Guided Interest Groups

# Guided Interest Groups

![Image 2: hero scape](https://sc26.supercomputing.org/wp-content/uploads/2026/04/hero_scape_02-1024x455.png)

![Image 3: students listening](https://sc26.supercomputing.org/wp-content/uploads/2026/09/student_gig_top-1024x640.jpg)

### Find Your Community. Explore Your Interests. Get the most out of SC.

Guided Interest Groups (GIGs) are interactive, community-driven learning experiences designed to help students make the most of the SC Technical Program while connecting with peers who share their interests.

Whether you’re new to high performance computing or eager to explore the latest advances, there’s a GIG for you. This year’s groups cover a diverse range of topics, from HPC fundamentals and emerging technologies to artificial intelligence, machine learning, sustainability, and scientific applications.

### Schedule

* * *

**GIGs Kickoff**

Sunday, 15 Nov 2026

Time TBD

_See sessions below for details._

### Committee

* * *

**Student Volunteers Chair**Suzanne Prentice, Oak Ridge National Laboratory (ORNL)

**Guided Interest Groups Chair**

Shivangi Gupta, Macon & Joan Brock Virginia Health Sciences at Old Dominion University

Find Your GIG. Meet Your People. Explore SC.

### Who Should attend?

**GIGs are open to all students attending SC, with priority given to students participating in the Students@SC cohorts.**

Each GIG kicks off with a dedicated event where you’ll meet your group, connect with your GIG leaders, and start exploring the SC Technical Program together.

**Pre-registration is required to attend the GIG Kickoff.**

Choose your area of interest and sign up below (beginning Oct 1).

## Sign Up & Participate

**1 OCT 2026**

Sign-ups Open

**6 NOV 2026**

Sign-ups Close

**15 NOV 2026**

GIGs Kickoff

[GIG Sign Up Opens Oct 1](https://sc26.supercomputing.org/students/guided-interest-groups/)

## GIGs

## GIG 1: Extreme-Scale Systems & applications

### DESCRIPTION

As scientific research tackles bigger and more complex challenges, high-performance computing (HPC) has become an essential tool for solving them. This GiG will showcase how researchers use some of the world’s most powerful supercomputers to solve real-world engineering and scientific problems. Students will learn about the latest advances in HPC, discover how these systems support groundbreaking research, and see the impact of computing across a wide range of fields.

### GIG LEADERS

![Image 4: Lorenzo](https://sc26.supercomputing.org/wp-content/uploads/2026/09/Lorenzo_Piarulli.jpg)

**Lorenzo Piarulli**

Lorenzo is a first-year PhD student in Computer Science at Sapienza University of Rome, where he researches high-performance parallel algorithms for emerging accelerators. His current focus is on large-scale genomics algorithms, multi-accelerator computing, and benchmarking. He earned his M.Sc. in Computer Science from Sapienza University of Rome, focusing on stencil computations on dataflow architectures. Lorenzo also serves as the Invited Talks, Keynote, and Plenary Lead Student Volunteer for the SC26.

![Image 5: Jay](https://sc26.supercomputing.org/wp-content/uploads/2026/09/Jay-Ashworth.jpg)

**Jay Ashworth**

Jay is a 3rd year Ph.D student in Computer Science from the University of Tennessee, Knoxville, where he is advised by Dr. Michela Taufer. His research interests include HPC job scheduling and performance analysis, and he is currently developing Flux Fiction, a HPC system emulator built on Flux in collaboration with Lawrence Livermore National Laboratory. He also earned his B.S. and M.S. in Computer Science at the University of Tennessee, where he was on a world championship-winning VEXU robotics team and began researching HPC. Jay is serving as Co-Lead SVOL for the Infrastructure and Wayfinding Committee at SC26.

### schedule

**TBD**

## GIG 2: Humans & Data in HPC

### DESCRIPTION

High-performance computing (HPC) is often associated with powerful computers, advanced algorithms, and technical performance. However, behind every HPC system are people who build, use, and benefit from these technologies. This GIG will introduce students to sessions that explore not only the technical side of HPC, but also topics such as data, accessibility, ethics, and the real-world impact of computing. Students will gain a broader understanding of how HPC can be used to solve important challenges while making a positive difference for society.

### GIG LEADERS

![Image 6: Alex](https://sc26.supercomputing.org/wp-content/uploads/2026/09/Alex-Kiefer.jpg)

**Alex Kiefer**

Alex is a second-year Ph.D. student in Data Science and Engineering at the Bredesen Center, where he researches artificial intelligence for spatio-temporal modeling. Alex earned his B.S. and M.S. in Computer Science from Indiana University, conducting research on graph neural networks and trustworthy human-AI interaction. He serves as the Lead Student Volunteer for the Posters and Doctoral Showcase at the SC26.

![Image 7: Rahat](https://sc26.supercomputing.org/wp-content/uploads/2026/09/Rahat-Zaman.jpg)

**Rahat Zaman**

Rahat is a fourth year Ph.D. student in Computer Science at the University of Utah. His research lies at the intersection of human-AI interaction, data visualization, and explainable AI, with a focus on designing interactive systems that support more transparent, interpretable, and steerable data analysis. His work explores how visual interfaces and human-centered approaches can help users better understand complex data and AI-driven processes, enabling more effective collaboration between people and intelligent systems.

![Image 8: Shadmaan](https://sc26.supercomputing.org/wp-content/uploads/2026/09/Shadmaan-Hye.jpg)

**Shadmaan Hye**

Shadmaan is a fifth-year Ph.D. student in Computer Science at the Scientific Computing and Imaging (SCI) Institute at the University of Utah. Her research focuses on interactive data visualization for high-performance computing, with an emphasis on making complex system and performance data more interpretable. In collaboration with Lawrence Livermore National Laboratory (LLNL), her current work explores interactive approaches for analyzing and visualizing low-level assembly instructions in relation to their corresponding source code, helping bridge the gap between high-level programs and their execution on modern computing systems.

### schedule

**TBD**

## GIG 3: Increasing the Sustainability of HPC

### DESCRIPTION

As high-performance computing (HPC) systems become more powerful, they also require more energy to operate. This creates challenges related to cost, resource use, and environmental impact. In this GIG, students will explore how researchers are developing new ideas and technologies to make HPC more energy-efficient and sustainable while continuing to support important scientific discoveries.

### GIG LEADERS

![Image 9: Matheus](https://sc26.supercomputing.org/wp-content/uploads/2026/09/Matheus_Costa.jpg)

**Matheus Costa**

Matheus is a Ph.D. student in Computer Science at the Federal University of Rio Grande do Sul (UFRGS), where he researches energy-efficient high-performance computing, GPU resource management, and power-aware execution of coupled HPC and artificial intelligence workflows. His work explores GPU sharing, dynamic frequency control, and workflow-aware runtime techniques to improve the performance and efficiency of scientific applications. He earned his B.S. in Computer Science from UFRGS in 2025. Matheus serves as the Digital Experience Lead Student Volunteer for the Students@SC program.

![Image 10: Naman](https://sc26.supercomputing.org/wp-content/uploads/2026/09/Naman_Kulshreshtha.jpg)

**Naman Kulshreshtha**

Naman is a fifth-year PhD student at Queen’s University, Canada, specializing in GPU resource and power management. His research focuses on GPU resource-sharing mechanisms and how to use them to improve overall system efficiency. He is also deeply interested in power-based scheduling for computing clusters. Currently, Naman is exploring resource partitioning in modern AMD GPUs and APUs to develop more efficient scheduling policies. Additionally, he will be serving as a Lead Student Volunteer for the Community Engagement Team at the Students@SC program.

### schedule

**TBD**

## GIG 4: AI/ML ALGORITHMS, INFRASTRUCTURE, & COMPUTATIONAL SCIENCE

### DESCRIPTION

As artificial intelligence and machine learning continue to transform scientific research, it is essential to understand the algorithms, computing infrastructure, and computational methods that enable these advances at scale. This GIG explores the intersection of AI/ML and computational science, focusing on the development of efficient algorithms, scalable software and hardware infrastructure, and their application to solving complex scientific and engineering problems. Participants will examine emerging trends in AI for science, high-performance computing for machine learning, and real-world applications that demonstrate how advanced computational techniques are accelerating discovery across diverse research domains.

### GIG LEADERS

![Image 11: Paulus](https://sc26.supercomputing.org/wp-content/uploads/2026/09/Paulus-Shituna.jpg)

**Paulus Shituna**

Paulus is a Ph.D. student in Computer Science at the University of Namibia. His research designs AI-based Natural Language Processing (NLP) frameworks on distributed HPC infrastructure. He holds both a BSc in Computer Science and an MSc in Information Technology from the University of Namibia. Paulus serves as the Student HQ & Operations LSV for the Students@SC program. Outside of academic pursuits, Paulus enjoys coding and playing chess.

![Image 12: Harshita](https://sc26.supercomputing.org/wp-content/uploads/2026/09/Harshita-Sahni-.jpg)

**Harshita Sahni**

Harshita is a final-year Ph.D. student in Computer Science at the University of New Mexico. Her research develops machine learning and high-performance computing (HPC) techniques for molecular dynamics simulations, with a focus on protein-protein interactions and real-time analysis of large-scale scientific data. She serves as the Communications LSV for the Students@SC program. Beyond her research, Harshita is an active volunteer and organizer within the high-performance computing community, having served in leadership roles at different conferences and organizations such as Women in Computing. In her free time, she enjoys badminton and spending time with family.

### schedule

**TBD**

## GIG 5: Accelerators & Quantum Computing

### DESCRIPTION

Emerging computing technologies are reshaping the future of high-performance computing. This GIG explores how quantum computing and next-generation hardware accelerators are enabling new approaches to solving complex scientific and engineering problems. Participants will learn about quantum algorithms, hybrid quantum–classical workflows, specialized accelerator architectures beyond GPUs, and their integration with modern HPC systems. Through discussions of current research, real-world applications, and emerging trends, this GIG provides an opportunity to explore the technologies that are driving the next generation of computational science and discovery.

### GIG LEADERS

![Image 13: Rie](https://sc26.supercomputing.org/wp-content/uploads/2026/09/ria_patel.jpg)

**Ria Patel**

Ria is a second-year Ph.D. student in Computer Science at NC State University, where she researches the integration of quantum high-performance computing (QHPC) workflows with hardware-aware pulse-level optimization. She earned her B.S. and M.S. degrees in Computer Science from the University of Tennessee, focusing on deep learning applications in classical HPC systems. Ria serves as the Student HQ & Operations LSV with Paulus for the Students@SC program. Outside of work, Ria enjoys artsy hobbies like crochet, cross-stitching, sewing, and sketching.

![Image 14: Befikir](https://sc26.supercomputing.org/wp-content/uploads/2026/09/Befikir-T.-Bogale.jpg)

**Befikir T. Bogale**

Befikir is a Ph.D. student at the University of Tennessee’s Global Computing Lab, specializing in performance analysis for high-performance computing applications. He earned his B.S. degree in Computer Science from the University of Tennessee, with a focus on performance analysis in HPC applications. His current research focuses on enabling deeper context into compiler optimization decisions to better inform performance tuning across diverse architectures. Befikir serves as the lead student volunteer for Tutorials. Outside of work, he enjoys reading, and, sometimes, even writing stories.

### schedule

**TBD**

## GIG 6: Ai/ML Applications

### DESCRIPTION

Artificial intelligence and machine learning are transforming how we tackle some of the world’s most challenging scientific and engineering problems. This GIG focuses on real-world applications of AI/ML across a wide range of domains, including healthcare, climate science, engineering, biology, materials science, and other data-intensive fields. Participants will explore how modern AI/ML techniques are being applied to accelerate discovery, improve decision-making, and solve complex problems at scale. Through discussions of cutting-edge research and practical use cases, this GIG will highlight the growing impact of AI/ML in advancing science, industry, and society.

### GIG LEADERS

![Image 15: Tamanna](https://sc26.supercomputing.org/wp-content/uploads/2026/09/Tamanna_Saini.jpg)

**Tamanna Saini**

Tamanna is a third-year Ph.D. student in Computer Science at the University of Oregon advised by Dr. Brittany Erickson. Her research bridges Machine Learning and Computational Seismology, with particular emphasis on Physics Informed Machine Learning. Her work involves working with physics-informed neural networks (PINNs) to solve both forward and inverse problems related to the elastic wave equation. Tamanna serves as the Workshops lead student volunteer for the SC conference series. Outside of research, Tamanna enjoys playing outdoor sports, cooking, reading, listening to music and spending time with friends.

![Image 16: Ishrat](https://sc26.supercomputing.org/wp-content/uploads/2026/09/Ishrat-Jahan-Eliza.jpg)

**Ishrat Jahan Eliza**

Ishrat is a third-year Ph.D. student in Computer Science at the Kahlert School of Computing and SCI Institute, University of Utah. Her research lies at the intersection of data visualization, high-performance computing, and large language models, with a focus on enabling intuitive exploration and communication of large-scale scientific data on commodity hardware through agent-based optimization strategies. Ishrat serves as the BoF and Panels Lead Student Volunteer for the Students@SC program. Outside of research, she enjoys hiking, dancing, and organizing cultural events.

### schedule

**TBD**

## GIG 7: Performance Analysis & Portability

### DESCRIPTION

What does _performance_ really mean in high-performance computing? This GIG explores the principles and techniques behind developing fast, scalable, and portable applications for modern HPC systems. Participants will learn how to measure and analyze application performance using benchmarking, profiling, and performance analysis tools, while gaining insight into optimization strategies for CPUs, GPUs, and emerging architectures. The GIG will also cover performance portability, enabling applications to run efficiently across diverse hardware platforms. Through discussions of state-of-the-art research and practical case studies, students will develop a deeper understanding of how performance analysis drives scientific computing and next-generation HPC applications.

### GIG LEADERS

![Image 17: tasmia](https://sc26.supercomputing.org/wp-content/uploads/2026/09/TasmiaJannat.jpg)

**Tasmina Jannat**

Tasmia is a Ph.D. student in Computer Science at Missouri University of Science and Technology, where she researches high-performance computing for spatial data processing, with a focus on processing-in-memory systems and irregular search workloads. She earned her B.Sc. and M.Sc. degrees in CSE from Rajshahi University of Engineering & Technology, Bangladesh focusing on hyperspectral image classification using deep learning. Tasmia serves as the Student Outreach & Networking LSV for the Students@SC program.

![Image 18: Greg](https://sc26.supercomputing.org/wp-content/uploads/2026/09/Greg_Bolet.jpg)

**Greg Bolet**

Greg is a Ph.D student in Computer Science at Virginia Tech under the tutelage of Dr. Kirk Cameron, where he researches automatic tuning and performance prediction of parallel codes. His work has explored the applications of optimization strategies for online/offline tuning of CPU and GPU codes. His current research is in the application of LLMs for Roofline performance prediction of GPU codes. He has been attending SC since 2018, and serves as one of the Wayfinding & Infrastructure Lead Volunteers in the Students@SC program. Outside of academics, Greg enjoys sewing, 3D-printing/CAD, thrifting, and hobby electronics!

![Image 19: Karame](https://sc26.supercomputing.org/wp-content/uploads/2026/09/Karame-Mohammadiporshokooh.jpg)

**Karame Mohammadiporshokooh**

Karame is a Ph.D student at Louisiana State University as well as researcher with expertise in high-performance computing (HPC), Parallel and distributed systems, runtime systems, and performance optimization. Her work focuses on developing scalable runtime technologies, distributed graph processing algorithms for next-generation HPC applications, and the integration of runtime systems with compiler technologies, artificial intelligence, and computer architecture to enable next generation HPC systems. Karame has contributed to several research projects aimed at improving programmability and performance in modern computational technologies.

### schedule

**TBD**

## GIG 8: SCinet & Advanced Research Networking

### DESCRIPTION

High-performance computing clusters, large-scale data centers, and large configurations all require networks operating on the principles of high-bandwidth _and_ low-latency. In the former cases, fast networks permit large-scale HPC and AI applications to send data between servers as quickly as possible, AND serve clients efficiently. The latter allows for fast, reliable internet for end-users and “edge” devices (laptops, phones, IoT devices, etc.). This GIG takes a dive into the organizations and sessions at SC26 that focus on leveraging networks in HPC clusters for and large-scale deployment principles for fast and efficient communication across thousands of entities.

### GIG LEADERS

![Image 20: Hayden](https://sc26.supercomputing.org/wp-content/uploads/2026/09/Hayden-Estes.jpg)

**Hayden Estes**

Hayden is a Ph.D. student in Computer Science at Virginia Tech, researching high-performance computing, with a focus on Energy Aware Efficiency Modeling and emerging architectures. They earned their B.S. in Computer Science from University of Alabama in Huntsville in 2023. Hayden serves as one of the SCinet LSV’s for the Students@SC program and has been a part of SCinet since 2025.

![Image 21: Benjamin](https://sc26.supercomputing.org/wp-content/uploads/2026/09/BenMichalowicz_SC_Nov_2025.jpg)

**Benjamin Michalowicz**

Benjamin is a Ph.D. student in Computer Science at The Ohio State University. His focus is on enhancing one-sided communication and related workloads with novel hardware such as NVIDIA’s BlueField Smart Network Cards. He earned his BS and MS in Computer Science from Stony Brook University in 2020 and 2021. Ben serves as one of the SCinet LSV’s for the Students@SC program and has been a part of SCinet since 2022. Outside of academia, Ben is an avid drummer and enjoys tabletop games such as Dungeons and Dragons.

### schedule

**TBD**

![Image 22: SC attendee](https://sc26.supercomputing.org/wp-content/uploads/2022/11/people-hr-17.jpg)

### [Questions](https://sc26.supercomputing.org/contact-us/?topic=Students%40SC)

If you have questions about Guided Interest Groups contact the Students@SC Committee. We’d be happy to help.

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