电力中长期交易中的合同电量偏差考核机制
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TM9

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国家重点研发计划(2016YFB0901100)


An assessment mechanism for contract energy deviation in a mediumand longterm electricity market
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    摘要:

    在电力现货市场建立之前,中国的电力中长期市场仍为纯电量交易,合理设计合同电量的偏差处理与结算方式有利于电力中长期交易向现货市场的平稳过渡。在此背景下,研究电力中长期交易合同电量的偏差考核机制。针对电力中长期交易基本规则中的典型偏差考核机制进行分析,提出适用于当前市场环境的发电侧偏差处理方法;从全电量交易和合同执行能力2个方面分析市场主体的偏差电量考核风险,在此基础上设计面向用户非全电量交易的固定比例全电量偏差电量结算方式,并进一步提出分阶段的用户侧偏差考核机制。采用以国内某省偏差考核实际数据为基础所构建的算例,验证所提出的偏差考核机制在中长期电力市场中的有效性。

    Abstract:

    Before the spot electricity market is established, electrical energy is traded through forward contracts in the current medium and longterm electricity market in China. A reasonable balancing and settlement mechanism for electrical energy deviation is conducive to the smooth transition from the mediumand longterm electricity market to the spot market. Given this background, an assessment mechanism is presented for contract energy deviation in a mediumand longterm electricity market. First, the deviation settlement mechanism of the basic rules for the mediumand longterm electricity market is examined, and a generationside deviation balancing mechanism suitable for the current electricity market environment proposed. Then, considering the differences of the marketoriented electricity proportion and the differences in the capabilities of various users in controlling contract deviations, the risk of the electrical energy deviation penalty imposed on demand customers is analyzed. A fixedratio energy deviation settlement method is next designed for nontotal electrical energy transaction, and a staged assessment mechanism of demandside energy deviation proposed. Simulations based on actual deviation assessment data from a provincial electricity market in China show that the proposed energy deviation assessment mechanism is effective in the mediumand longterm electricity market.

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陈中元,林哲敏,何 川,等.电力中长期交易中的合同电量偏差考核机制[J].电力科学与技术学报,2020,35(1):31-39.
CHEN Zhongyuan, LIN Zhemin, HE Chuan, et al. An assessment mechanism for contract energy deviation in a mediumand longterm electricity market[J]. Journal of Electric Power Science and Technology,2020,35(1):31-39.

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