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Spike-based dynamic computing with asynchronous sensing-computing neuromorphic chip

delete2024-05-25
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OA
AI
M
Man Yao
O
Ole Richter
G
Guangshe Zhao
N
Ning Qiao
Y
Yannan Xing
D
Dingheng Wang
T
Tianxiang Hu
W
Wei Fang
T
Tuğba Demirci
M
Michele De Marchi
邓磊 (Lei Deng)
T
Tianyi Yan
C
Carsten M. Nielsen
S
Sadique Sheik
C
Chenxi Wu
Y
Yonghong Tian
许博 (Bo Xu)
G
Guoqi Li *
DOI:10.1038/s41467-024-47811-6delete
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Abstract

Abstract

En 中文
By mimicking the neurons and synapses of the human brain and employing spiking neural networks on neuromorphic chips, neuromorphic computing offers a promising energy-efficient machine intelligence. How to borrow high-level brain dynamic mechanisms to help neuromorphic computing achieve energy advantages is a fundamental issue. This work presents an application-oriented algorithm-software-hardware co-designed neuromorphic system for this issue. First, we design and fabricate an asynchronous chip called Speck, a sensing-computing neuromorphic system on chip. With the low processor resting power of 0.42mW, Speck can satisfy the hardware requirements of dynamic computing: no-input consumes no energy. Second, we uncover the dynamic imbalance in spiking neural networks and develop an attention-based framework for achieving the algorithmic requirements of dynamic computing: varied inputs consume energy with large variance. Together, we demonstrate a neuromorphic system with real-time power as low as 0.70mW. This work exhibits the promising potentials of neuromorphic computing with its asynchronous event-driven, sparse, and dynamic nature.
Keywords:
NEURAL-NETWORK
ON-CHIP
ATTENTION
VISION
SYSTEM
INTELLIGENCE
MECHANISMS
NOISE
LOIHI
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Journal

Nature Communications cover
Nature Communications
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15.7
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91.2W

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T
tsinghua university
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X
xi'an jiaotong university
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Citations: 75
I
institute of automation, cas
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university of zurich
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P
Peng Cheng Laboratory
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P
peking university
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C
chinese academy of sciences
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Papers: 44.8W
Citations: 704
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