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): 31-37.doi: 10.12267/j.issn.2096-5931.2026.07.005

专题:算电协同技术与应用 上一篇    下一篇

算电协同产业发展面临的现状与路径思考

Current challenges and development approaches for the computing-power synergy industry

张晓丹1,2   

  1. 1 中国科学院大学工程科学学院, 北京 100043
    2 北京赛瑞斯国际工程咨询有限公司, 北京 100071
  • 收稿日期:2026-06-20 出版日期:2026-07-25 发布日期:2026-07-30
  • 作者简介:
    张晓丹, 中国科学院大学工程科学学院硕士研究生在读,北京赛瑞斯国际工程咨询有限公司工程师,主要研究方向为能源政策、工程项目管理等

ZHANG Xiaodan1,2   

  1. 1 School of Engineering Sciences, University of Chinese Academy of Sciences, Beijing 100043, China
    2 Beijing Seris International Engineering Consulting Co., Ltd., Beijing 100717, China
  • Received:2026-06-20 Online:2026-07-25 Published:2026-07-30

摘要:

算电协同作为数字基础设施与能源基础设施深度融合的关键范式,正日益成为推动绿色算力发展和可再生能源消纳的重要驱动力。我国的算电协同已初步形成涵盖“新能源发电、储能调节、电网输送、智算中心、应用场景”的完整产业链体系。绿色算力与“源网荷储算”协同发展正成为显著趋势,但仍面临算力资源配置与能源资源布局空间错配、算力调度与电力调度之间缺乏有效协同机制、标准体系与市场机制不健全以及复合型人才供给不足等挑战。针对上述问题,提出完善顶层设计和标准体系建设、推动“源网荷储算”协同创新、构建产学研用一体化的融合创新生态等建议,旨在推动算力与电力协同优化,促进数字经济与能源体系的高质量耦合发展。

关键词: 算电协同, 绿色算力, 新型电力系统

Abstract:

The synergy between computing and power,as a key paradigm for the deep integration of digital and energy infrastructure, is increasingly serving as a driver for sustainable computing development and renewable energy integration. China’s computing-power synergy ecosystem has initially established a comprehensive industrial chain system encompassing “new energy power generation, energy storage regulation, grid transmission, intelligent computing centers, and application scenarios.” The coordinated development of green computing and the “source-grid-load-storage-computing” framework is becoming a prominent trend. However, it faces challenges including spatial misalignment between computing resource allocation and energy distribution, inadequate coordination mechanisms between computing and power scheduling, underdeveloped standardization and market mechanisms, and an insufficient supply of interdisciplinary talent. To address the aforementioned issues, the paper proposes a series of recommendations, including the enhancement of strategic planning and standardization frameworks, the fostering of collaborative innovation across the “source-grid-load-storage-computing” ecosystem, and the establishment of an integrated innovation ecosystem combining industry, academia, research, and application. These measures aim to promote the coordinated optimisation of computing capacity and power resources, and to foster the high-quality, integrated development of the digital economy and the energy system.

Key words: computing-power synergy, green computing power, new power system

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