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A System Emulator for AC Microgrid Testing

机译:用于交流微电网测试的系统仿真器

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摘要

The control algorithms proposed to improve load sharing, stability, and power quality in microgrids need rigorous testing. Real-time emulation is one of the proven approaches to provide realistic testing environments for the development of products and control algorithms. Typically, for microgrid system-level testing, individual component-level (source or load) emulators are employed: hardware test bed clusters. These use multiple converters, increasing control complexity and consuming space. In this article, we propose a flexible microgrid system emulator, based on a single converter for the testing of a complete microgrid, at any node selected by the user. This is unlike the case of emulators proposed in the literature till date, which use a large number of converters to emulate the system dynamics, wherein each converter is used to mimic the behavior of one particular component, such as a single source or a single load. The modeling and control aspects are discussed, and the accuracy of the model developed and the working of the emulator are established through simulations and experiments on a laboratory prototype, respectively, considering the case of a simple two-distributed-generator-based microgrid for various scenarios.
机译:为改善微电网的负荷分配,稳定性和电能质量而提出的控制算法需要进行严格的测试。实时仿真是为产品和控制算法的开发提供现实的测试环境的成熟方法之一。通常,对于微电网系统级测试,将使用单个组件级(源或负载)仿真器:硬件测试平台集群。它们使用多个转换器,增加了控制复杂性并占用了空间。在本文中,我们提出了一个灵活的微电网系统仿真器,该仿真器基于单个转换器,用于在用户选择的任何节点上测试完整的微电网。这与迄今为止文献中提出的仿真器的情况不同,仿真器使用大量的转换器来仿真系统动力学,其中每个转换器都用于模拟一个特定组件的行为,例如单个电源或单个负载。讨论了建模和控制方面,并通过在实验室原型上的模拟和实验分别考虑了简单的基于两台发电机的微电网的情况,通过仿真和实验确定了开发模型的准确性和仿真器的工作性场景。

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