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Implementation of a Real-Time Microgrid Simulation Platform Based on Centralized and Distributed Management

机译:基于集中分布式管理的实时微电网仿真平台的实现

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Demand response and distributed generation are key components of power systems. Several challenges are raised at both technical and business model levels for integration of those resources in smart grids and microgrids. The implementation of a distribution network as a test bed can be difficult and not cost-effective; using computational modeling is not sufficient for producing realistic results. Real-time simulation allows us to validate the business model’s impact at the technical level. This paper comprises a platform supporting the real-time simulation of a microgrid connected to a larger distribution network. The implemented platform allows us to use both centralized and distributed energy resource management. Using an optimization model for the energy resource operation, a virtual power player manages all the available resources. Then, the simulation platform allows us to technically validate the actual implementation of the requested demand reduction in the scope of demand response programs. The case study has 33 buses, 220 consumers, and 68 distributed generators. It demonstrates the impact of demand response events, also performing resource management in the presence of an energy shortage.
机译:需求响应和分布式发电是电力系统的关键组成部分。在智能电网和微电网中整合这些资源时,在技术和业务模型级别都提出了一些挑战。将分发网络作为测试平台可能很困难,而且成本效益不高;使用计算建模不足以产生现实的结果。实时仿真使我们能够在技术水平上验证业务模型的影响。本文包括一个平台,该平台支持对连接到较大配电网络的微电网进行实时仿真。已实现的平台使我们可以使用集中式和分布式能源资源管理。使用针对能源操作的优化模型,虚拟电源播放器可以管理所有可用资源。然后,该仿真平台使我们能够在需求响应程序范围内从技术上验证所请求的需求减少的实际实现。案例研究有33辆公交车,220个用户和68个分布式发电机。它展示了需求响应事件的影响,还可以在能源短缺的情况下执行资源管理。

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