CBM-Dual: A 65-nm Fully Connected Chaotic Boltzmann Machine Processor for Dual Function Simulated Annealing and Reservoir Computing
AI 摘要
CBM-Dual芯片实现SA和RC双功能,降低功耗和面积,提升Edge AI性能。
主要贡献
- 提出CBM-Dual芯片,支持SA和RC双功能
- 设计CBM专用调度器,减少99%乘累加操作
- 提出高效乘法分割方案,减少59%面积
方法论
基于65nm工艺,采用混沌玻尔兹曼机,通过定制调度器和乘法分割降低计算成本。
原文摘要
This paper presents CBM-Dual, the first silicon-proven digital chaotic dynamics processor (CDP) supporting both simulated annealing (SA) and reservoir computing (RC). CBM-Dual enables real-time decision-making and lightweight adaptation for autonomous Edge AI, employing the largest-scale fully connected 1024-neuron chaotic Boltzmann machine (CBM). To address the high computational and area costs of digital CDPs, we propose: 1) a CBM-specific scheduler that exploits an inherently low neuron flip rate to reduce multiply-accumulate operations by 99%, and 2) an efficient multiply splitting scheme that reduces the area by 59%. Fabricated in 65nm (12mm$^2$), CBM-Dual achieves simultaneous heterogeneous task execution and state-of-the-art energy efficiency, delivering $\times$25-54 and $\times$4.5 improvements in the SA and RC fields, respectively.