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Ferroelectric compute-in-memory annealer for combinatorial optimization problems

delete2024-03-18
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OA
AI
X
Xunzhao Yin
Y
Yu Qian
A
Alptekin Vardar
M
Marcel Günther
F
Franz Müller
N
Nellie Laleni
Z
Zijian Zhao
Z
Zhouhang Jiang
Z
Zhiguo Shi
Y
Yiyu Shi
X
Xiao Gong
卓成 (Cheng Zhuo) *
T
Thomas Kämpfe *
K
Kai Ni *
DOI:10.1038/s41467-024-46640-xdelete
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Abstract

Abstract

En 中文
Computationally hard combinatorial optimization problems (COPs) are ubiquitous in many applications. Various digital annealers, dynamical Ising machines, and quantum/photonic systems have been developed for solving COPs, but they still suffer from the memory access issue, scalability, restricted applicability to certain types of COPs, and VLSI-incompatibility, respectively. Here we report a ferroelectric field effect transistor (FeFET) based compute-in-memory (CiM) annealer for solving larger-scale COPs efficiently. Our CiM annealer converts COPs into quadratic unconstrained binary optimization (QUBO) formulations, and uniquely accelerates in-situ the core vector-matrix-vector (VMV) multiplication operations of QUBO formulations in a single step. Specifically, the three-terminal FeFET structure allows for lossless compression of the stored QUBO matrix, achieving a remarkably 75% chip size saving when solving Max-Cut problems. A multi-epoch simulated annealing (MESA) algorithm is proposed for efficient annealing, achieving up to 27% better solution and similar to 2X speedup than conventional simulated annealing. Experimental validation is performed using the first integrated FeFET chip on 28nm HKMG CMOS technology, indicating great promise of FeFET CiM array in solving general COPs.
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Journal

Nature Communications cover
Nature Communications
IF:
15.7
Papers:
9.2W
Citations:
91.2W

Organization

N
National University of Singapore
Scholars:
7.5W
Papers: 6.5W
Citations: 11.4W
Z
zhejiang university
Scholars:
17.5W
Papers: 12.0W
Citations: 152