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An Optimal Virtual Power Plant Planning Strategy from a Composite System Cost/Worth Perspective

机译:基于复合系统成本/价值视角的虚拟电厂优化规划策略

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Adoption of smart grid technologies and incorporation of aggregator models like virtual power plants (VPP) necessitates the performance of new studies pertaining to their planning and operation. This paper presents a composite system cost/worth analysis based planning framework for VPP aggregators for determining an optimal distributed generation (DG) portfolio which can offer them maximum cost savings while participating in day-ahead electricity markets. The VPP’s market participation costs are sub-divided into five categories, and relevant formulations are presented for each category while considering an explicit market clearing mechanism. Topology and constraint related information for both the VPP’s internal network and the external (transmission) grid are incorporated into the planning strategy. A minimum cost assessment model is presented for determining the aggregator’s optimal DG portfolio. The proposed planning framework is tested on the IEEE Reliability Test System in conjunction with the IEEE 69-node distribution network, and results obtained are discussed in detail.
机译:智能电网技术的采用以及诸如虚拟电厂(VPP)之类的聚合器模型的引入,有必要进行与规划和运营有关的新研究。本文为VPP聚合器提供了一种基于复合系统成本/价值分析的规划框架,用于确定最佳分布式发电(DG)组合,从而可以在参与日前电力市场的同时最大程度地节省成本。 VPP的市场参与成本分为五个类别,并在考虑明确的市场清理机制的同时为每个类别提供了相关的提法。 VPP的内部网络和外部(传输)网格的与拓扑和约束相关的信息均已纳入规划策略。提出了一种最低成本评估模型,用于确定聚合器的最佳DG组合。结合IEEE 69节点配电网络,在IEEE可靠性测试系统上对提出的计划框架进行了测试,并对获得的结果进行了详细讨论。

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