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Modeling and Simulation of Three-Phase Voltage Source Inverter with Dynamic Phasors

机译:具有动态相量的三相电压源逆变器的建模与仿真

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The rapid switching of the high-frequency three-phase voltage source inverter bring the system with the rapid dynamic process, which beyond the application of the traditional phasor model. Furthermore, a large number of power electronic devices make the electromagnetic transient (EMT) model of microgrid involving multiple inverters very complex. In this paper, the dynamic model of three-phase voltage source inverter (VSI) interfacing with micro-source is established using dynamic phasor method under the condition of RL loads. The three-phase VSI model is simplified by keeping important system state variables corresponding to the time-varying Fourier series, which include switching function considering both the DC component and fundamental frequency component, and the DC source considering only the DC component, the AC output considering only the fundamental frequency component. Finally, the dynamic phasor (DP) model of the three-phase VSI and its EMT model was built in Matlab/Simulink. By comparing the DP model and the detailed time domain EMT model of three phase VSI, the simulation results show that the DP model can reflect the main dynamic characteristics, improve the simulation speed and reduce the running time.
机译:高频三相电压源逆变器的快速切换将系统带来了快速动态过程,这超出了传统量相模型的应用。此外,大量的电力电子设备使微电网的电磁瞬态(EMT)模型涉及多个逆变器非常复杂。在本文中,使用动态相位源法在RL负载条件下建立了与微源的三相电压源逆变器(VSI)接口的动态模型。通过保持与时变傅立叶系列对应的重要系统状态变量来简化三相VSI模型,该变量包括考虑DC分量和基本频率分量的切换功能,以及考虑DC分量的DC源,AC输出仅考虑基本频率分量。最后,在MATLAB / Simulink中构建了三相VSI及其EMT模型的动态相量(DP)模型。通过比较DP模型和三相VSI的详细时域EMT模型,模拟结果表明,DP模型可以反映主动态特性,提高模拟速度并减少运行时间。

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