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Hardware-in-the-Loop FPGA-based Real-time simulation of Cascaded H-Bridge Multilevel Inverter for Grid Interactive Photovoltaic Power Plant

机译:基于硬件的环路FPGA基于级联H桥多级逆变器的基于硬件的FPGA的实时仿真,用于电网交互式光伏电厂

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Requirements, for better power control and rapid devices in the field of power converters, have created many topological and control methods for power electronics. Renowned of them are the multilevel inverters topologies, who are broadly utilized as a part of high-power high-voltage applications because of their worthwhile execution contrasted with two-level inverters. The focal purpose of this paper is to evolve a control method for a 3-phase multilevel cascaded H-bridge photovoltaic (PV) inverter connected to the grid utility system with an LCL filter design using Space Vector Modulation (SVPWM) scheme. The control of the system (inverter-LCL filter) grid-connected is studied thru conventional direct-current d-q vector control strategy. Simulation results, in the SimPowerSystem/Matlab environment, demonstrate that the proposed control strategy can extend robust stability for system after changing reference parameters. An FPGA in the loop implementation of the suggested algorithm to create the switching sequences, is introduced for approval this algorithm in real time application.
机译:对于电源转换器领域的更好功率控制和快速设备,要求为电力电子设备创造了许多拓扑和控制方法。它们的着名是多级逆变器拓扑,由于与两级逆变器形成对比,他们广泛地用作高功率高压应用的一部分。本文的局灶目的是通过使用空间向量调制(SVPWM)方案的LCL滤波器设计,在连接到电网公用事业系统的三相多级级联H桥光伏电压(PV)逆变器的控制方法。通过传统的直流D-Q矢量控制策略研究了系统(逆变器-LCL滤波器)网格连接的控制。仿真结果,在SimPowersystem / Matlab环境中,表明所提出的控制策略可以在改变参考参数之后对系统进行稳健的稳定性。在建议算法的循环实现中进行FPGA以创建交换序列,以在实时应用中批准该算法。

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