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Implementation of hardware-in-the-loop simulation workbench for a hybrid AC/DC microgrid

机译:用于混合AC / DC Microgrid的硬件型仿真工作台的实现

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This paper presents the implementation of a hardware-in-the-loop simulation (HIL) workbench for hybrid AC/DC micro grid. The hybrid AC/DC micro grid integrates both distributed sources and loads in AC/DC systems to respective links directly. For DC system, photovoltaic arrays with boost converter (PVBC), battery with bi-directional DC/DC converter and DC loads are covered. Diesel generator (DGs) and conventional AC loads are included in AC grid. Between AC and DC girds, a four-quadrant operating three phase converter is applied which can act as either an inverter or a rectifier to maintain power balance between two systems. The power units of this hybrid micro grid are simulated with Opal-RT real-time simulator while the control units are implemented on TI TMS320F28335 DSPs. This hardware-in-the-loop simulation workbench offers a good platform for system level control algorithm design and verification in micro grid. And it serves as a basis for future power-hardware-in-the-loop simulation (PHIL) with power stage involved.
机译:本文介绍了用于混合AC / DC Micro GRID的硬件内仿真(HIL)工作台的实现。混合AC / DC Micro GRID将分布式源和加载到AC / DC系统中的载荷直接集成到相应的链路中。对于DC系统,具有Boost转换器(PVBC)的光伏阵列,覆盖具有双向DC / DC转换器和DC负载的电池。柴油发电机(DGS)和传统的AC负载包括在AC网格中。在AC和DC GIRD之间,应用了四象限,其操作三相转换器,其可以充当逆变器或整流器,以在两个系统之间保持功率平衡。该混合微电网的电源单元用Opal-RT实时模拟器模拟,而控制单元在TI TMS320F28335 DSP上实现。这种硬件仿真工作台为微电网进行了系统级控制算法设计和验证的良好平台。它是未来电力级的未来电源 - 硬件仿真(PHIL)的基础。

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