信息通信技术与政策

信息通信技术与政策

信息通信技术与政策 ›› 2026, Vol. 52 ›› Issue (7): 38-46.doi: 10.12267/j.issn.2096-5931.2026.07.006

专题:算电协同技术与应用 上一篇    下一篇

面向算电协同的算力基础设施能效评估体系与标准化演进研究

Research on energy efficiency evaluation systems and standardization evolution of computing infrastructure for computing-power synergy

毛宇博, 孙小强, 沈岸平, 许伟, 陈龙泉   

  1. 中国信息通信研究院泰尔系统实验室, 北京 100191
  • 收稿日期:2026-04-03 出版日期:2026-07-25 发布日期:2026-07-30
  • 通讯作者: 孙小强, 中国信息通信研究院泰尔系统实验室计量部主任、高级工程师,主要从事光电测量和通信计量测试等方面的研究工作
  • 作者简介:
    毛宇博, 中国信息通信研究院泰尔系统实验室计量部工程师,主要从事算力基础设施能耗与能效评估、算力计量与溯源、算力相关技术标准研究及通信计量测试等方面的研究工作
    沈岸平, 中国信息通信研究院泰尔系统实验室计量部高级工程师,主要从事算力基础设施能耗与能效评估、算力相关技术标准研究及通信计量测试等方面的研究工作
    许伟, 中国信息通信研究院泰尔系统实验室计量部高级工程师,主要从事计量技术标准研究及通信计量测试等方面的研究工作
    陈龙泉, 中国信息通信研究院泰尔系统实验室计量部高级工程师,主要从事算力基础设施能耗与能效评估、人工智能计量及通信计量测试等方面的研究工作

MAO Yubo, SUN Xiaoqiang, SHEN Anping, XU Wei, CHEN Longquan   

  1. Telecom Technology Lab-System, China Academy of Information and Communications Technology, Beijing 100191, China
  • Received:2026-04-03 Online:2026-07-25 Published:2026-07-30

摘要:

算力基础设施与电力系统的关系正由单向供用向双向协同演进,传统以电能使用效率(Power Usage Effectiveness,PUE)为核心的能效评估体系已难以适应这一发展趋势。系统梳理算电协同场景下算力基础设施能效多维评估指标的研究进展,分析液冷、算力网络广域调度等新兴技术对传统评估范式带来的挑战,总结国内外算电协同标准体系的演进情况及存在的不足。文献分析表明,异构计算场景下算力指标量纲统一和动态评估标准化是当前研究的核心议题,多主体协同机制下的效益分配与责任归属仍有待深入研究。制定算力负荷灵活性分级标准和算电联合调度接口协议是推动算电协同标准化发展的重要方向。

关键词: 算电协同, 能效评估, 算力基础设施, 电能使用效率, 需求响应

Abstract:

The relationship between computing infrastructure and power systems is evolving from unidirectional supply and consumption toward bidirectional coordination. Traditional energy-efficiency evaluation frameworks centered on Power Usage Effectiveness (PUE) can no longer adequately accommodate this trend. Research progress on multi-dimensional energy efficiency evaluation metrics for computing-power synergy is systematically reviewed. The challenges posed by emerging technologies, including liquid cooling and wide-area scheduling in computing power networks, to conventional evaluation paradigms are analyzed, and the evolution and limitations of domestic and international standard systems for compute-electricity collaboration are summarized. Literature analysis indicates that harmonizing heterogeneous measurement dimensions and standardizing dynamic evaluation are central research issues, while benefit allocation and responsibility attribution under multi-stakeholder coordination mechanisms require further investigation. The development of graded standards for computing-load flexibility and interface protocols for joint computing-power dispatch represents an important direction for advancing the standardization of computing-power synergy.

Key words: computing-power synergy, energy efficiency evaluation, computing infrastructure, PUE, demand response

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