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Evaluation of Control Strategies within Hybrid DC/AC Microgrids using Typhoon HIL

机译:使用台风HIL评估混合直流/交流电普林中的控制策略

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Hardware-in-Loop (HIL) based simulation improves effectiveness of system simulation process by enabling interaction with part of the physical components. Hybrid ac/dc microgrids comprise of both dc and ac distribution, and comprise of different sources, loads and storage, interfaced to either bus. A critical factor related to successful microgrid implementation is management of energy interaction amongst the different components. The control systems for each of the different elements need to be critically validated in such a configuration. This paper presents the use of Typhoon HIL as the validation tool for control systems for all the constituents within hybrid dc-ac microgrid. The modelled Micro Grid consists of Distributed Energy Resources (DERs) such as a PV plant, Diesel Generator, Fuel Cell, Wind Farm, Micro-turbines, Battery Energy Storage System (BESS) and Converters. The simulation of Bidirectional Converter, connected between ac and dc buses, and its operation has been validated first using Matlab Simulink, and then compared to Typhoon HIL 402 based simulation.
机译:基于硬件的环路(HIL)仿真通过使系统仿真过程能够实现与部分物理组件的交互来提高系统仿真过程的有效性。混合AC / DC微电网包括DC和AC分布,并包括不同的源,负载和存储,接合到任一母线。与成功的微电网实现相关的关键因素是在不同组件之间的能量交互管理。用于每个不同元件的控制系统需要在这种配置中批判性地验证。本文介绍了用台风HIL作为混合直流微电网中所有成分的控制系统的验证工具。所建模的微电网由分布式能源(DER)组成,如PV工厂,柴油发电机,燃料电池,风电场,微涡轮机,电池储能系统(BESS)和转换器。双向转换器的仿真在AC和DC总线之间连接,其操作首先使用MATLAB Simulink验证,然后与基于Typhoon HIL 402的仿真相比。

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