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Wind and Solar Power Integration in Electricity Markets and Distribution Networks Through Service-centric Virtual Power Plants

机译:通过以服务为中心的虚拟电厂在电力市场和配电网络中进行风能和太阳能集成

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A virtual power plant (VPP) is formulated and developed as a service-centric aggregator that enables the market integration of distributed energy resources and simultaneously supports cooperation with the distribution system operator (DSO) in addressing the issue of network usage. A suitable schedule of interactions and communications between aggregators, market operators, system operators, generators, and consumers, regarding electricity market participation and network operation is proposed and presented in a sequence diagram. The cooperation on congestion management in the distribution network is highlighted as solution to relieve network constraints via the optimal adjustment of active and reactive power of VPP resources while maximizing renewable energy integration across the pool under management. The VPP reduces uncertainty affiliated with input data by employing the latest forecasts through a rolling horizon approach in the planning stage. Thanks to the flexibility of the VPP to perform rescheduling in accordance with agreements it negotiated with its resources, it becomes possible to refrain from undesirable curtailments. Both the market-integrative and the service-centric roles of the VPP are verified through modeling and simulation with a benchmark European distribution network. The results confirm the added value of the proposed VPP in enhancing the integration of wind and solar power.
机译:虚拟电厂(VPP)被制定和开发为以服务为中心的聚合器,可实现分布式能源的市场整合,并同时支持与配电系统运营商(DSO)的合作以解决网络使用问题。提出了有关电力市场参与和网络运营的聚合器,市场运营商,系统运营商,发电商和消费者之间的交互和通讯的适当时间表,并以顺序图的形式给出了时间表。配电网络中拥塞管理方面的合作作为解决方案得到了强调,该解决方案可通过优化VPP资源的有功和无功功率来缓解网络约束,同时最大程度地管理整个池中的可再生能源。 VPP通过在规划阶段采用滚动预测方法来采用最新的预测,从而减少了与输入数据相关的不确定性。由于VPP可以灵活地按照与其资源协商的协议进行重新计划,因此可以避免不必要的削减。通过使用基准欧洲分销网络进行建模和仿真,验证了VPP的市场整合角色和以服务为中心的角色。结果证实了拟议中的VPP在增强风能和太阳能集成方面的附加价值。

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