Project Grant 2615713
- The National Science Foundation awarded Boise State University $199,695 on July 1, 2026, under the Engineering Research Initiation (ERI) grant program (CFDA 47.041) to design and develop a hierarchical, heterogeneous near-memory processing architecture for multimodal, energy-efficient edge computing. The project, titled "HYDRA: A Truly Heterogeneous Near-Memory Processing Architecture for Multimodal, Energy-Efficient Edge Computing," will address the memory bottleneck in modern...
- The National Science Foundation Division of Information and Intelligent Systems awarded Purdue University $427,000 on July 1, 2026, under the Computer and Information Science and Engineering program (CFDA 47.070) to develop networking algorithms and programmable photonic interconnects for accelerating artificial intelligence training and inference workloads. The project addresses power consumption and bandwidth scaling constraints in existing electrical interconnects as AI models grow in scale...
- The National Science Foundation Division of Materials Research awarded Boise State University $344,276 on September 1, 2026, under the Mathematical and Physical Sciences program (CFDA 47.049) to develop a deep learning framework that estimates material parameters in multi-principal element alloys directly from microstructure images. The award is a Project Grant with period of performance through August 31, 2029, and place of performance in Boise, Idaho. The research addresses a critical...
- The National Science Foundation Division of Information and Intelligent Systems awarded the University of South Florida $301,642 on August 1, 2026, under the Computer and Information Science and Engineering program (CFDA 47.070) to develop memory-centric hardware architectures for energy-efficient artificial intelligence inference on edge devices. The project runs through July 31, 2029, and addresses the challenge of deploying AI in power-constrained, compact devices such as wearable health...
- Federal Grant Award Summary Boise State University received a $175,000 Project Grant from the National Science Foundation's Division of Information and Intelligent Systems (CISE Program, CFDA 47.070) awarded on June 15, 2025, with completion scheduled for May 31, 2027. This Computer and Information Science and Engineering (CISE) research initiative focuses on improving the robustness of artificial intelligence (AI) models, particularly quantum neural networks (QNNs), which leverage quantum...
- The National Science Foundation Division of Information and Intelligent Systems awarded Arizona State University $360,002 on June 1, 2026, under the Computer and Information Science and Engineering program (CFDA 47.070) to develop an open-source, end-to-end design automation workflow for electronic-photonic integrated chips that integrate electronics with photonics to enable efficient AI computing, optical interconnects, and sensing systems. The award funds development of a full-stack...
- The National Science Foundation awarded Boise State University $248,779 on January 1, 2026, under the Computer and Information Science and Engineering program (CFDA 47.070) to develop educational resources training the scientific computing community in formal program specification. The project deliverables include an interdisciplinary vertically integrated project (VIP) course for Boise State scientific computing students that incorporates numerical algorithms written in C and ANSI/ISO C...
- The National Science Foundation Division of Information and Intelligent Systems awarded North Carolina State University $268,768 on July 15, 2026, under the Computer and Information Science and Engineering program (CFDA 47.070) to develop methods for efficiently processing irregular data on graphics processing units for artificial intelligence applications. The project addresses computational inefficiencies in current AI frameworks when handling irregular data structures common in large language...
- The National Science Foundation (NSF) awarded a $400,000 Project Grant under the Computer and Information Science and Engineering (CFDA 47.070) program to Arizona State University, Division (doing business as Orspa), for the project "COLLABORATIVE RESEARCH: SHF: MEDIUM: TINY CHIPLETS FOR BIG AI: A RECONFIGURABLE-ON-PACKAGE SYSTEM". This 4-year project (7/1/2024 - 6/30/2028) aims to pioneer a computing system for massive AI workloads, including new architectural and design automation...
- The National Science Foundation Division of Information and Intelligent Systems awarded Purdue University $366,820 on July 1, 2026, under the Computer and Information Science and Engineering program (CFDA 47.070) to develop computing foundations for neuro-symbolic artificial intelligence on three-dimensional integrated circuits and systems. The research establishes a co-design framework bridging neuro-symbolic models, memory-centric architectures, and system-technology co-optimization across...
The National Science Foundation Division of Information and Intelligent Systems awarded Boise State University $499,837 on August 1, 2026, under the Computer and Information Science and Engineering program (CFDA 47.070) to develop transformative AI hardware that integrates photonic and electronic computing chips near memory through vertical 3D assembly, reducing data transfer costs and energy consumption for artificial intelligence computing. The project, titled "3D-PFLOPS: 3D Integrated Parallel Fabrics Enabling Layered Opto-Electronic Processors for Near-Memory AI Computing," creates an architectural simulation framework for phase-aware heterogeneous processors that combine electronic and photonic processing units integrated near shared memory. The work addresses a critical bottleneck in current AI hardware: the energy and overhead costs of moving large amounts of data between processing and memory chips. By assigning different AI computing phases—training and inference—to the chip best suited for each task, the design optimizes both computational and data communication costs compared to existing technologies. The three specific research objectives are: co-designing an electro-optical application-specific integrated circuit; developing a thermal-aware high-bandwidth near-memory 3D integration strategy; and creating a topology-aware, localized data orchestration and task-scheduling framework that enables efficient execution across heterogeneous compute fabrics. Performance occurs in Boise, Idaho, with a period of performance from August 1, 2026, through July 31, 2029. The assistance type is a Project Grant. Boise State University is the prime recipient and the ultimate recipient.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $499.8k | 7/29/26 |