A unified software/hardware scalable architecture for brain-inspired computing based on self-organizing neural models

01/06/2022
by   Artem R. Muliukov, et al.
26

The field of artificial intelligence has significantly advanced over the past decades, inspired by discoveries from the fields of biology and neuroscience. The idea of this work is inspired by the process of self-organization of cortical areas in the human brain from both afferent and lateral/internal connections. In this work, we develop an original brain-inspired neural model associating Self-Organizing Maps (SOM) and Hebbian learning in the Reentrant SOM (ReSOM) model. The framework is applied to multimodal classification problems. Compared to existing methods based on unsupervised learning with post-labeling, the model enhances the state-of-the-art results. This work also demonstrates the distributed and scalable nature of the model through both simulation results and hardware execution on a dedicated FPGA-based platform named SCALP (Self-configurable 3D Cellular Adaptive Platform). SCALP boards can be interconnected in a modular way to support the structure of the neural model. Such a unified software and hardware approach enables the processing to be scaled and allows information from several modalities to be merged dynamically. The deployment on hardware boards provides performance results of parallel execution on several devices, with the communication between each board through dedicated serial links. The proposed unified architecture, composed of the ReSOM model and the SCALP hardware platform, demonstrates a significant increase in accuracy thanks to multimodal association, and a good trade-off between latency and power consumption compared to a centralized GPU implementation.

READ FULL TEXT

page 6

page 9

page 11

page 13

research
04/11/2020

Brain-inspired self-organization with cellular neuromorphic computing for multimodal unsupervised learning

Cortical plasticity is one of the main features that enable our capabili...
research
10/30/2018

Neuromorphic hardware as a self-organizing computing system

This paper presents the self-organized neuromorphic architecture named S...
research
07/26/2022

SPAIC: A Spike-based Artificial Intelligence Computing Framework

Neuromorphic computing is an emerging research field that aims to develo...
research
07/20/2020

SHEARer: Highly-Efficient Hyperdimensional Computing by Software-Hardware Enabled Multifold Approximation

Hyperdimensional computing (HD) is an emerging paradigm for machine lear...
research
01/19/2016

Scalability in Neural Control of Musculoskeletal Robots

Anthropomimetic robots are robots that sense, behave, interact and feel ...
research
07/27/2023

Cortex Inspired Learning to Recover Damaged Signal Modality with ReD-SOM Model

Recent progress in the fields of AI and cognitive sciences opens up new ...
research
04/06/2020

Human action recognition with a large-scale brain-inspired photonic computer

The recognition of human actions in video streams is a challenging task ...

Please sign up or login with your details

Forgot password? Click here to reset