Research on Load-side Transaction Mechanism Based on the Peak-valley Difference of Power Grid

Tianlong Xing, Jianjie Xue, Bo Zhao, Cui Cheng
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Abstract

Through the analysis of power big data, this project studies the internal mechanism relationship between the grid peak-valley difference and the load-side resource regulation ability, designs a multi-integrated and highly flexible load-side trans-action trigger mechanism based on the grid peak-valley difference, and establishes a long-term market trigger mechanism for grid security. Based on the goal of reducing the average peak-valley difference in the province by the percentage reduction, using the real historical data of typical regions, the automatic trading plan measurement model was designed, and the load response transaction plan for peak-shaving and valley-filling in 2021 was formulated, and the diversified integration of highly flexible grid load-side transactions. The market mechanism has designed and developed 4 trading varieties. By coordinating the load-side transaction plan with the control center, the positive and negative backup of the power grid can be reduced, and the operating cost of the power grid can be reduced.
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基于电网峰谷差的负荷侧交易机制研究
本项目通过电力大数据分析,研究电网峰谷差与负荷侧资源调节能力之间的内在机制关系,设计基于电网峰谷差的多集成、高度灵活的负荷侧交易触发机制,建立电网安全的长效市场触发机制。基于按百分比降低全省平均峰谷差的目标,利用典型地区的真实历史数据,设计了自动交易计划计量模型,制定了2021年调峰填谷负荷响应交易计划,实现了电网负载侧交易的多样化融合,实现了电网负载侧交易的高度柔性。市场机制设计并发展了4个交易品种。通过与控制中心协调负载侧交易计划,可以减少电网的正、负备份,降低电网的运行成本。
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