A Transferable Load Management Contract Model Based on Mechanism Design Theory

LiaoYi Ning, Yu Liu, Yilin Jia
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Abstract

in the electricity market environment, the information asymmetry between power grid companies and users may lead to the inefficient planning and implementation of demand response (DR) projects. Therefore, this paper proposes a transferable load management contract model based on mechanism design theory to improve the flexibility and operability of users with transferable load to participate in day-ahead scheduling of power system. In this model, the user type parameter is introduced to describe the user's willingness to participate in the transferable load management contract, the rational behavior of the user participating in the contract transaction is reflected by the personal rational constraint, and the incentive compatibility constraint is used to urge the user to report the real type parameter in the transaction process. Under this mechanism, according to the type of users reported by the users, the power grid company uses the incentive mechanism to encourage users to actively participate in load transfer, and restricts the response behavior of users through the form of contract, which can reduce the uncertainty of the implementation of demand response and improve the economy and environmental protection of the power grid operation. In this paper, through the analysis of a numerical example, it is verified that the mechanism can effectively stimulate the potential of user transfer load, realize the optimal allocation of transferable load, which is beneficial to reduce the economic cost of the system, reduce carbon emissions, and improve the overall social benefits.
基于机制设计理论的可转移负荷管理契约模型
在电力市场环境下,电网公司与用户之间的信息不对称可能导致需求响应(DR)项目的规划和实施效率低下。为此,本文提出了一种基于机制设计理论的可转移负荷管理契约模型,以提高可转移负荷用户参与电力系统日前调度的灵活性和可操作性。在该模型中,引入用户类型参数来描述用户参与可转让负荷管理合同的意愿,通过个人理性约束来体现用户参与合同交易的理性行为,并使用激励兼容约束来督促用户在交易过程中报告真实类型参数。在该机制下,电网公司根据用户上报的用户类型,利用激励机制鼓励用户积极参与负荷转移,并通过合同的形式约束用户的响应行为,可以减少需求响应实施的不确定性,提高电网运行的经济性和环保性。本文通过一个数值算例分析,验证了该机制能够有效激发用户转移负荷的潜力,实现可转移负荷的优化配置,有利于降低系统经济成本,减少碳排放,提高整体社会效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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