Award
Portfolio Data
Radiation-Tolerant Neuromorphic Processor Featuring Nonvolatile Compute-in-Memory Architecture
Award Year: 2020
UEI: NMVLHHKSSPB1
HUBZone Owned: No
Woman Owned: No
Socially and Economically Disadvantaged: No
Congressional District: 17
Tagged as:
SBIR
Phase I
Awarding Agency
NASA
Total Award Amount: $124,984
Contract Number: 80NSSC20C0368
Agency Tracking Number: 206021
Solicitation Topic Code: H6
Solicitation Number: SBIR_20_P1
Abstract
Low power and high speed neuromorphic processors have an on-demand need for the growing edge-AI market. Non-Volatile Memory (NVM) based compute-in-memory architecture using Flash memory, STT-MRAM or ReRAM has shown promising results for high energy efficiency compared to the traditional computing architecture. While the various technical challenges such as slow access speed and high fabrication cost exist, radiation-tolerance is the key merit of using emerging nonvolatile memories such as STT-MRAM or ReRAM against Flash memory for space applications.nbsp;In this SBIR phase I project, we plan to investigate key reliability architectural challenges, and solutions such that these radiation-tolerant NVMs can be deployed in compute-in-memory based neuromorphic processors for higher performance and energy efficiency compared to the conventional general purpose processors. With this objective, we propose to explore suitable micro-architecture of NVM based compute-in-memory processor, design an NVM based neuromorphic core, and optimize a neural network architecture addressing variation and reliability challenges of the NVM cells along with model quantization.
Award Schedule
-
2020
Solicitation Year -
2020
Award Year -
August 24, 2020
Award Start Date -
March 1, 2021
Award End Date
Principal Investigator
Name: Seung-Hwan Song
Phone: (612) 237-4629
Email: ssong@anaflash.com
Business Contact
Name: Seung-Hwan Song
Phone: (612) 237-4629
Email: ssong@anaflash.com
Research Institution
Name: N/A