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类脑计算软硬件生态的现状与展望

高滨 王蕾 魏一 杨智杰 吕雅帅 石伟 龚锐 吴华强

计算机工程与科学2026,Vol.48Issue(6):951-970,20.
计算机工程与科学2026,Vol.48Issue(6):951-970,20.DOI:10.3969/j.issn.1007-130X.2026.06.001

类脑计算软硬件生态的现状与展望

Current status and future prospects of neuromorphic computing software and hardware ecosystem

高滨 1王蕾 2魏一 3杨智杰 4吕雅帅 5石伟 3龚锐 3吴华强6

作者信息

  • 1. 清华大学集成电路学院,北京 100084||启元实验室,北京 100095
  • 2. 启元实验室,北京 100095||军事科学院国防科技创新研究院,北京 100850
  • 3. 国防科技大学计算机学院,湖南 长沙 410073||先进微处理器芯片与系统重点实验室,湖南 长沙 410073
  • 4. 军事科学院国防科技创新研究院,北京 100850
  • 5. 启元实验室,北京 100095
  • 6. 清华大学集成电路学院,北京 100084
  • 折叠

摘要

Abstract

With the rapid advancement of the Internet of Things(IoT)and edge intelligence,neuro-morphic computing has become a core direction of architectural research in the post-Moore era owing to its event-driven operation,massive parallelism,and ultra-low power consumption.However,a systematic quantitative analysis of 500 high-impact publications over the past decade(2016-2026)reveals a pro-nounced structural imbalance:hardware-oriented research accounts for over 42%of the surveyed litera-ture,whereas software stack and compiler toolchain research—which bridges hardware and applications—constitutes less than 5%.This disparity is fundamentally attributable to the absence of a unified in-struction set architecture(ISA)in the neuromorphic computing domain,which results in inconsistent software-hardware interfaces,fragmented ecosystems,and constraints on the large-scale deployment of applications.To address this gap,this paper presents a comprehensive survey of the full deployment pipeline from algorithmic models to hardware integration,encompassing spiking neural network(SNN)computational models,4 mainstream processor architecture paradigms(dedicated ASIC,programmable processor,computing-in-memory architecture,and heterogeneous hybrid processor),software stack tech-nologies(compilers,programming framework,and runtime environment),as well as the latest advances in 4 representative application domains:edge vision,robotic navigation,scientific computing,and biosig-nal processing.The central thesis of this paper is that a neuromorphic ISA constitutes the critical abstraction layer connecting algorithmic diversity with hardware execution efficiency,and represents the logical starting point for resolving the current ecosystem deadlock.Building on this foundation,the paper offers a forward-looking perspective on 2 emerging trends—neuromorphic ISA standardization and LLM-aided hardware design—with the aim of providing a systematic reference roadmap for the field's transi-tion from research prototypes to large-scale practical deployment.

关键词

类脑计算/类脑处理器体系结构/类脑指令集架构/软件栈与编译工具链

Key words

neuromorphic computing/neuromorphic processor architecture/neuromorphic instruc-tion set architecture(ISA)/software stack and compiler toolchain

分类

信息技术与安全科学

引用本文复制引用

高滨,王蕾,魏一,杨智杰,吕雅帅,石伟,龚锐,吴华强..类脑计算软硬件生态的现状与展望[J].计算机工程与科学,2026,48(6):951-970,20.

基金项目

国家自然科学基金(62372461,62406335) (62372461,62406335)

国防重点实验室项目(WDZC20235250112) (WDZC20235250112)

计算机工程与科学

1007-130X

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