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Profit Based Self Scheduling of Virtual Power Plant Under Multiple Locational Marginal Prices

机译:多位置边际价格下虚拟电厂基于利润的自调度

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Integration of DERs and prosumers as a single plant to obtain allied benefits via market interface introduces the concept of Virtual Power Plant (VPP). This aggregation imposes techno-economic challenges on VPP operator while participating into LMP based wholesale market. Moreover, widely dispersed DERs connected at different nodes with transmission bus experiences multiple Locational Marginal Prices (LMPs). This would impact VPP scheduling and trading decisions, hence require in-depth investigations. In this regard, this paper presents a mathematical exposition for network constrained VPP scheduling with LMP based wholesale market participation. IEEE 30-bus system is modified to implement the proposed model. Results demonstrate that multiple LMPs substantially help VPP operator in optimal resource allocation while maintaining network flows within limits. Further, power mismatch is traded into LMP based market through multiple nodes to maximize its profit. Proposed model would help VPP operator to maintain a consistent system in view of technical and market aspects.
机译:将DER和Prosumers集成为单个工厂,以通过市场接口获得相关利益,引入了虚拟电厂(VPP)的概念。这种聚合在加入基于LMP的批发市场时,给VPP运营商带来了技术经济挑战。此外,在不同节点上与传输总线连接的分散的DER经历了多个位置边际价格(LMP)。这将影响VPP的安排和交易决策,因此需要进行深入调查。在这方面,本文提出了基于LMP的批发市场参与的网络约束VPP调度的数学解释。修改了IEEE 30总线系统以实现所提出的模型。结果表明,多个LMP基本上可以帮助VPP运营商优化资源分配,同时将网络流量保持在限制范围内。此外,功率失配通过多个节点被交易到基于LMP的市场,以最大化其利润。拟议的模型将帮助VPP运营商从技术和市场方面维护一致的系统。

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