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考虑激励机制和多主体收益的分布式电源优化配置 被引量:3

Distributed generator optimal configuration considering incentivemechanisms and multiagent profits
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摘要 针对环境压力以及分布式电源传统规划中考虑主体单一的问题,提出一种综合考虑分布式电源运营商、配电公司和电力用户三者利益,包含风、光、燃的分布式电源优化配置模型。引入碳交易机制和绿色证书交易机制,计及发电及电能传输过程中的碳排放,建立考虑碳排放环境成本和需求响应的多主体配置模型;利用TOPSIS综合评价思想使各主体收益接近最大化,并采用二阶锥松弛技术进行规划求解。算例分析结果表明,所提出的优化配置模型可有效均衡提升各主体收益以及整体收益,提升分布式电源的消纳能力,有助于促进碳减排和新能源电力发展,验证了所提模型的有效性。 In allusion to the environmental pressure and the single subject in the traditional distributed generator planning,the optimal configuration model is proposed,which considers the interests of distributed generation operators,distribution companies and power users,including wind,light and fuel gas.In consideration of the carbon emissions in the process of power generation and power transmission,a multi⁃agent benefit allocation model considering the environmental costs of carbon emissions and demand response is established by introducing the carbon trading mechanism and green certificate trading mechanism.TOPSIS comprehensive evaluation idea is used to maximize the benefits of each subject,and the second⁃order cone relaxation technique is adopted to solve the program.The analysis results of the example show that the proposed optimized configuration model can effectively balance the benefits of various entities and the overall benefits,enhance the absorption capacity of distributed generator,and help promote carbon emission reduction and the development of new energy electricity.The results demonstrate the effectiveness of the proposed model.
作者 潘婷 程静 程筱鹏 PAN Ting;CHENG Jing;CHENG Xiaopeng(School of Electrical Engineering,Xinjiang University,Urumqi 830017,China;MOE Renewable Energy Generation and Grid Connection Control Engineering Center,Xinjiang University,Urumqi 830017,China)
出处 《现代电子技术》 2023年第13期140-146,共7页 Modern Electronics Technique
基金 新疆维吾尔自治区重大科技专项(2022A01001-4)。
关键词 分布式电源 多主体收益 碳交易机制 绿色证书交易机制 环境成本 需求响应 消纳能力 二阶锥松弛 distributed generator multiagent profits carbon trading mechanism green certificate trading mechanism environmental cost demand response absorptive capacity second order conic relaxation
作者简介 潘婷(1995—),女,硕士研究生,研究方向为主动配电网规划;程静(1980—),女,博士,副教授,研究方向为新能源发电与并网控制;程筱鹏(1995—),男,硕士研究生,研究方向为可再生能源并网。146。
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