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Mechanism Design for Virtual Power Plant with Independent Distributed Generators

机译:具有独立分布式发电机的虚拟电厂机制设计

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Penetration of distributed energy resources (DERs) in the legacy grid is leading to lower wholesale electricity prices, higher balancing costs, and reliability issues. We study a virtual power plant (VPP) — an aggregation of DERs — as a feasible and non-disruptive way of integrating these resources into electricity markets. We design the VPP with a combination of dispatchable and non-dispatchable generators which are privately owned and might have private information. The VPP acts as an intermediary between the generators and the day-ahead wholesale market and balances the system locally in real time. Using mechanism design, we design heuristic transfers of the VPP to the generators to reduce the operating cost of the overall system. From the simulations, we conclude that the overall cost of the system and the behavior of the generators and the VPP with the designed transfers are similar to those of the centralized VPP case, where the VPP owns and manages the generators within its territory.
机译:遗留电网中的分布式能源(DER)的渗透导致更低的批发电价,更高的平衡成本以及可靠性问题。我们研究虚拟电厂(VPP)-DER的集合-作为将这些资源整合到电力市场中的可行且无干扰的方式。我们使用私有和可能具有私有信息的可调度和不可调度生成器的组合来设计VPP。 VPP充当发电机与日间批发市场之间的中介,并实时在本地平衡系统。使用机制设计,我们设计了VPP到发电机的启发式传输,以降低整个系统的运行成本。从模拟中我们可以得出结论,系统的总体成本以及发电机和具有设计的传输的VPP的行为与集中式VPP情况相似,在该案例中,VPP在其领土内拥有和管理发电机。

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