程紫运, 田云飞, 戴继新, 陈兆雁, 潘雨情, 李彬. 小型温控负荷参与电网灵活互动的发展路径及关键技术[J]. 内蒙古电力技术, 2022, 40(3): 31-37. DOI: 10.19929/j.cnki.nmgdljs.2022.0044
引用本文: 程紫运, 田云飞, 戴继新, 陈兆雁, 潘雨情, 李彬. 小型温控负荷参与电网灵活互动的发展路径及关键技术[J]. 内蒙古电力技术, 2022, 40(3): 31-37. DOI: 10.19929/j.cnki.nmgdljs.2022.0044
CHENG Ziyun, TIAN Yunfei, DAI Jixin, CHEN Zhaoyan, PAN Yuqing, LI Bin. Development Path and Key Technology of Small Temperature Control Load Participating in Flexible Interaction of Power Grid[J]. Inner Mongolia Electric Power, 2022, 40(3): 31-37. DOI: 10.19929/j.cnki.nmgdljs.2022.0044
Citation: CHENG Ziyun, TIAN Yunfei, DAI Jixin, CHEN Zhaoyan, PAN Yuqing, LI Bin. Development Path and Key Technology of Small Temperature Control Load Participating in Flexible Interaction of Power Grid[J]. Inner Mongolia Electric Power, 2022, 40(3): 31-37. DOI: 10.19929/j.cnki.nmgdljs.2022.0044

小型温控负荷参与电网灵活互动的发展路径及关键技术

Development Path and Key Technology of Small Temperature Control Load Participating in Flexible Interaction of Power Grid

  • 摘要: 温控负荷作为一类调度灵活、潜力巨大的优质可调节负荷资源,因其发展应用起步较晚,目前还缺少有效的控制策略及政策和市场机制。为了更大规模最大限度发挥温控负荷的调节潜力,本文从温控负荷的特征和参与新能源消纳的技术出发分析温控负荷参与新能源消纳的可行性,进而从管理、技术、政策和市场4个层面分析了温控负荷参与电网互动的改革发展思路,最后分别从分层分区灵活聚合、确定性时延管理、末端分布式交易等方面分析了温控负荷参与电网灵活互动的关键技术,并对温控负荷资源的进一步研究进行总结展望。

     

    Abstract: As a kind of high-quality adjustable load resource with flexible scheduling and great potential, temperature control load still lacks effective control strategy and policy market mechanism because its development and application started late. In order to maximize the regulation potential of temperature control load on a larger scale, starting from the characteristics of temperature control load and the technology of participating in new energy consumption, this paper analyzes the feasibility of temperature control load participating in new energy consumption, and then analyzes the reform and development ideas of temperature control load participating in power grid interaction from the four aspects of management, technology, policy and market. Finally, from the aspects of hierarchical and zoning flexible aggregation, deterministic time delay management, and terminal distributed transaction, the key technologies of temperature control load participating in the flexible interaction of power grid are analyzed, and the further research of temperature control load resources is summarized and prospected.

     

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