基于改进lyapunov函数的三相三电平双支路并网逆变器控制方案

N. Altin, I. Sefa, H. Komurcugil, S. Ozdemir
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引用次数: 1

摘要

本文提出了一种三相三电平双支路中性点箝位并网逆变器。由于所提出的逆变器拓扑结构只有两个三电平支路,因此它总共采用了八个有源开关和四个钳位二极管。因此,多电平逆变器的优点是通过减少开关计数来实现的。此外,推导了一种改进的基于李雅普诺夫函数的控制方案(LFBCS),并将其应用于所提出的拓扑结构。采用李亚普诺夫直接法确定控制律,仅采用栅格电流反馈。然后,通过附加电容电压反馈来修正控制律,以抑制LCL滤波器的复共轭极点所带来的振荡。在保证系统全局稳定的同时,改进的LFBCS也改善了系统的暂态响应。通过MATLAB/Simulink仿真,验证了逆变器拓扑的工作原理和控制器的性能。仿真结果表明,所有三相电流均为平衡的正弦波形,电流谐波失真为1.07%,符合国际标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Modified Lyapunov-Function Based Control Scheme for Three-Phase Three-Level Two-Leg Grid-Tied NPC Inverter
In this paper, a three-phase three-level two-leg neutral point clamped (NPC) grid-tied inverter is proposed. Since, the proposed inverter topology has only two three-level legs, it employs totally eight active switches and four clamp diodes. Thus, advantages of the multi-level inverter are achieved with reduced switch count. In addition, a modified Lyapunov-function based control scheme (LFBCS) is derived and applied to the proposed topology. A control law is determined by using Lyapunov's direct method with only grid current feedback. Then, the control law is modified with an additional capacitor voltage feedback to damp the oscillations introduced by the complex conjugate poles of the LCL filter. Whereas ensuring the global stability of the system, the proposed modified LFBCS also improves the transient response of the system. The operation of the inverter topology and performance of the proposed controller are proved through MATLAB/Simulink simulations. Simulation results prove that all three-phase currents are balanced and in sinusoidal waveform, and current harmonics distortion is obtained as 1.07% which is in the limits of international standards.
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