Optimization of Heterogeneous Resources Combination using Virtual Power Plant based on Modern Portfolio Theory

Qiuchen Yun, Liting Tian, Fang Zhang, Lin Cheng
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引用次数: 2

Abstract

In recent years, with the development of smart grid technologies, wind turbines, photovoltaics and other renewable energy sources as well as demand-side loads have participated in grid dispatching, resulting in increased complexity of energy flows in the grid. Distributed energy resources (DERs) differ in many dimensions, such as technical attributes, operating modes, and business objectives, and its management authority also belongs to different entities, making it more difficult for grids to manage DERs. A management mode, virtual power plant (VPP), being enabled by information and communication technology, could effectively overcome the challenges with decentralized DERs and help realize the aggregation of DERs. In this paper, the interaction between customers and VPP is modeled, where VPP divides the owners of DERs into three categories according to the willingness and responsiveness of customers and balances budget costs and risks based on the modern portfolio theory. Simulation with the CIGRE 20kV distribution network benchmark demonstrates that VPP could greatly meet the power consumption demand of multiple participants during operation. This paper also provides a basis for the selection of DERs aggregated by VPP.11This paper is sponsored by the National Key Research and Development Program (No.2017YFB0903300) and National Natural Science Foundation of China (No.51807107) 22This paper is sponsored by the Young Talents Support Project of the Chinese Society for Electrical Engineering (CSEE) titled “Research on key technologies for optimal operation and control of transportation energy systems”
基于现代投资组合理论的虚拟电厂异构资源组合优化
近年来,随着智能电网技术的发展,风电、光伏等可再生能源以及需求侧负荷参与电网调度,导致电网内能量流的复杂性增加。分布式能源在技术属性、运行模式、业务目标等多个维度上存在差异,其管理权限也属于不同的实体,这给电网对分布式能源的管理增加了难度。在信息通信技术的支持下,虚拟电厂(VPP)管理模式可以有效地克服分布式电网的挑战,实现分布式电网的聚合。本文建立了客户与VPP之间的交互模型,VPP根据客户的意愿和响应性将der的所有者分为三类,并基于现代投资组合理论平衡预算成本和风险。以CIGRE 20kV配电网为基准的仿真结果表明,VPP能较好地满足多参与者运行时的用电需求。11本文为国家重点研发计划项目(No.2017YFB0903300)和国家自然科学基金项目(No.51807107)资助,中国电机工程学会青年人才支持项目“交通能源系统优化运行与控制关键技术研究”
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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