TY - JOUR
T1 - Memristor-Based Neuromorphic Chips
AU - Duan, Xuegang
AU - Cao, Zelin
AU - Gao, Kaikai
AU - Yan, Wentao
AU - Sun, Siyu
AU - Zhou, Guangdong
AU - Wu, Zhenhua
AU - Ren, Fenggang
AU - Sun, Bai
N1 - Publisher Copyright:
© 2024 Wiley-VCH GmbH.
PY - 2024/4/4
Y1 - 2024/4/4
N2 - In the era of information, characterized by an exponential growth in data volume and an escalating level of data abstraction, there has been a substantial focus on brain-like chips, which are known for their robust processing power and energy-efficient operation. Memristors are widely acknowledged as the optimal electronic devices for the realization of neuromorphic computing, due to their innate ability to emulate the interconnection and information transfer processes witnessed among neurons. This review paper focuses on memristor-based neuromorphic chips, which provide an extensive description of the working principle and characteristic features of memristors, along with their applications in the realm of neuromorphic chips. Subsequently, a thorough discussion of the memristor array, which serves as the pivotal component of the neuromorphic chip, as well as an examination of the present mainstream neural networks, is delved. Furthermore, the design of the neuromorphic chip is categorized into three crucial sections, including synapse-neuron cores, networks on chip (NoC), and neural network design. Finally, the key performance metrics of the chip is highlighted, as well as the key metrics related to the memristor devices are employed to realize both the synaptic and neuronal components.
AB - In the era of information, characterized by an exponential growth in data volume and an escalating level of data abstraction, there has been a substantial focus on brain-like chips, which are known for their robust processing power and energy-efficient operation. Memristors are widely acknowledged as the optimal electronic devices for the realization of neuromorphic computing, due to their innate ability to emulate the interconnection and information transfer processes witnessed among neurons. This review paper focuses on memristor-based neuromorphic chips, which provide an extensive description of the working principle and characteristic features of memristors, along with their applications in the realm of neuromorphic chips. Subsequently, a thorough discussion of the memristor array, which serves as the pivotal component of the neuromorphic chip, as well as an examination of the present mainstream neural networks, is delved. Furthermore, the design of the neuromorphic chip is categorized into three crucial sections, including synapse-neuron cores, networks on chip (NoC), and neural network design. Finally, the key performance metrics of the chip is highlighted, as well as the key metrics related to the memristor devices are employed to realize both the synaptic and neuronal components.
KW - key performance metrics
KW - memristor
KW - neural network
KW - neuromorphic chips
KW - synaptic-neuron cores
UR - https://www.scopus.com/pages/publications/85181208674
U2 - 10.1002/adma.202310704
DO - 10.1002/adma.202310704
M3 - 文献综述
C2 - 38168750
AN - SCOPUS:85181208674
SN - 0935-9648
VL - 36
JO - Advanced Materials
JF - Advanced Materials
IS - 14
M1 - 2310704
ER -