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Virtual Power Plant Integration Into a Vertically Integrated Utility: A Case Study

机译:虚拟电厂集成到垂直整合的实用程序中:一个案例研究

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Large scale penetration of renewable generation in power grids bring new challenges for grid operators in terms of balancing the system in cost efficient manners. The most common ways to deal with distributed variable generation include increased reserve margins, usage of energy storage, demand response resources and renewable generation curtailment, along with improved generation forecasting capabilities. In parallel, the concept of Virtual Power Plant (VPP) that entails aggregation and management of distributed energy resources, is becoming increasingly popular in Smart Girds.This paper presents findings from a pilot VPP implementation into a vertically integrated utility system in Dubai, UAE. We demonstrate the effective integration of VPP into the grid with real and simulated assets as VPP coalition members. We showcase the system architecture, operational modes and integration scenarios. The case study covers aggregation of multiple distributed energy sources such as utility-scale batteries and microgrids with a total size of 1.8MW
机译:在Power Grid中的可再生生成的大规模渗透为电网运营商的新挑战为平衡系统的高效举止提供了新的挑战。处理分布式变量一代的最常见方法包括增加的储备利润,能量存储,需求响应资源和可再生一代措施以及改善的生成预测能力。并行地,虚拟电厂(VPP)的概念,需要分配和管理分布式能源资源,在智能纹理中变得越来越受欢迎。本文将试验VPP实施中的发现介绍了阿联酋迪拜垂直集成的公用事业系统。我们展示了VPP与Real和模拟资产的有效整合到网格中,作为VPP联盟成员。我们展示了系统架构,操作模式和集成方案。案例研究涵盖了多个分布式能源的聚集,例如公用电池和微电网,总尺寸为1.8mW

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