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Direct power control for three phase grid connected inverter via port-controlled Hamiltonian method

机译:通过端口控制的哈密顿方法直接控制三相并网逆变器的功率

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This paper presents a new direct active and reactive power control (DPC) controller scheme for a three-phase grid connected voltage source inverter (VSI) based on passivity viewpoint. The proposed method is designed in the framework of port-controlled Hamiltonian system. The proposed method is made up of two parts, one thing is a feedfoward part and the other is a feedback part. The feedforward part is calculated from the model dynamics of VSI. The feedback part is designed to compensate for system uncertainty. The proposed method is verified with simulation and experiment. The simulation uses MATLAB/Simulink and PLECS, and the experiment uses hardware in the loop (HIL) with TI TMS320F28335 DSP. The simulation and experiment results compared with those using direct power control-sliding mode control (DPC-SMC) for the grid connected VSI. The proposed method gives less total harmonic distortions, faster transient response.
机译:本文提出了一种基于无源性观点的三相并网电压源逆变器(VSI)的新型直接有功和无功功率控制(DPC)控制器方案。该方法是在港口控制哈密顿系统的框架内设计的。所提出的方法由两部分组成,一个是前馈部分,另一个是反馈部分。前馈部分是根据VSI的模型动力学计算得出的。反馈部分旨在补偿系统不确定性。仿真和实验验证了该方法的有效性。仿真使用MATLAB / Simulink和PLECS,实验使用TI TMS320F28335 DSP的硬件在环(HIL)中。仿真和实验结果与使用直接功率控制-滑模控制(DPC-SMC)的并网VSI进行了比较。所提出的方法使总谐波失真更少,瞬态响应更快。

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