考虑碳排放和消费责任权重的两级电力市场跨省交易模型

Chunlei Jiao, Hongyan Hao, Ming Li, Rifucairen Fu, Yichun Liu, Shunfu Lin, Ronghui Liu
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引用次数: 0

摘要

在中国省际市场和省际交易联合运行的背景下,如何利用省际可再生能源交易来满足负荷需求和能源消耗是一个关键问题。省际和省内市场的联合运行,为省级电力公司优化和清理省内电力市场,完成省内消费责任权重指标,实现跨省区可再生能源消费提供了新的途径。本文将省内发电与用电量相结合,利用省际可再生能源交易满足省内负荷需求,完成省内用电量责任权重指标。将省内市场交易和省际市场出清分别作为模型的上、下层次。在两级电力市场运行框架下,上层模型以考虑碳排放成本和消费责任权重的省内预期总运行成本最小化为目标,下层模型以省际可再生能源购买成本最小化为目标。最后,分析了省际交易机制、风险规避系数、凭证价格和责任权重对运营成本的影响。通过仿真验证了所提模型能够满足省负荷用电量和消费责任权重指标的要求,促进了可再生能源的消纳。
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Inter-Provincial Transaction Model in Two-Level Electricity Market Considering Carbon Emission and Consumption Responsibility Weights
In the context of the joint operation of China’s intra-provincial markets and inter-provincial trading, how to meet the load demand and energy consumption using inter-provincial renewable energy trading is a key problem. The combined operation of intra-provincial and inter-provincial markets provides a new way for provincial power companies to optimize and clear the intra-provincial power market, complete the intra-provincial consumption responsibility weight index, and consume renewable energy across provinces and regions. This paper combines power generation and consumption within the province, uses inter-provincial renewable energy trading to meet the load demand within the province and completes the index of intra-provincial consumption responsibility weights. The intra-provincial market trading and inter-provincial market clearing are respectively taken as the upper and lower levels of the model. Under the two-level electricity market operation framework, the upper-level model aims to minimize the expected total operating cost within the province considering the carbon emission cost and the weight of the consumption responsibility, while the lower-level model aims to minimize the inter-provincial renewable energy purchasing cost. Finally, the influence of inter-provincial transaction mechanism, risk aversion coefficient, voucher price, and responsibility weight on operating cost is analyzed. Simulation is used to verify that the proposed model can meet the requirements of the provincial load power consumption and the consumption responsibility weight index, and promote the consumption of renewable energy.
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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
122
期刊介绍: Energy Engineering is a bi-monthly publication of the Association of Energy Engineers, Atlanta, GA. The journal invites original manuscripts involving engineering or analytical approaches to energy management.
期刊最新文献
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