论文标题

低温神经形态硬件

Cryogenic Neuromorphic Hardware

论文作者

Islam, Md Mazharul, Alam, Shamiul, Hossain, Md Shafayat, Roy, Kaushik, Aziz, Ahmedullah

论文摘要

人工智能革命(AI)提出了巨大的存储和数据处理要求。大型功耗和硬件开销已成为构建下一代AI硬件的主要挑战。为了减轻这种情况,神经形态计算引起了极大的关注,因为它具有出色的数据处理能力,并且功耗非常低。尽管无情的研究已经进行了多年,以最大程度地减少神经形态硬件的功耗,但我们离达到人脑的能源效率还有很长的路要走。此外,设计复杂性和过程变化阻碍了当前神经形态平台的大规模实现。最近,由于其出色的速度和功率指标,在低温温度中实施神经形态计算系统的概念引起了人们的兴趣。可以设计几种低温装置,可作为具有超低功率需求的神经形态原始功能。在这里,我们全面回顾了低温神经形态硬件。我们将现有的低温神经形态硬件分类为几个分层类别,并根据关键性能指标绘制比较分析。我们的分析简单地描述了相关电路拓扑的操作,并概述了最先进的技术平台遇到的优势和挑战。最后,我们提供了见解,以规避这些挑战,以实现未来的研究发展。

The revolution in artificial intelligence (AI) brings up an enormous storage and data processing requirement. Large power consumption and hardware overhead have become the main challenges for building next-generation AI hardware. To mitigate this, Neuromorphic computing has drawn immense attention due to its excellent capability for data processing with very low power consumption. While relentless research has been underway for years to minimize the power consumption in neuromorphic hardware, we are still a long way off from reaching the energy efficiency of the human brain. Furthermore, design complexity and process variation hinder the large-scale implementation of current neuromorphic platforms. Recently, the concept of implementing neuromorphic computing systems in cryogenic temperature has garnered intense interest thanks to their excellent speed and power metric. Several cryogenic devices can be engineered to work as neuromorphic primitives with ultra-low demand for power. Here we comprehensively review the cryogenic neuromorphic hardware. We classify the existing cryogenic neuromorphic hardware into several hierarchical categories and sketch a comparative analysis based on key performance metrics. Our analysis concisely describes the operation of the associated circuit topology and outlines the advantages and challenges encountered by the state-of-the-art technology platforms. Finally, we provide insights to circumvent these challenges for the future progression of research.

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