Phase locked loop-free sliding-mode-based power control for grid-connected voltage-sourced inverters under unbalanced network conditions

S. R. Khayam Hoseini, H. Givi, E. Farjah, T. Ghanbari
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引用次数: 4

Abstract

In this paper, a phase locked loop-free power control method is presented for grid-connected voltage-sourced inverters under unbalanced network conditions. The main advantages of the proposed technique are low implementation cost and simplicity of the control strategy. These advantages are achieved through elimination of phase locked loop (PLL) function by the proposed compensation strategy. Phase locked loop functions are considered as an expensive part of a system. Hence, PLL elimination leads to simpler implementation of the power control as well as reduction of the system cost. The proposed power control method is based on modification of normal sliding mode power control using compensation feedbacks for active and reactive powers. Two scenarios including unbalanced angles for three phase voltages and nonidentical voltage amplitudes are considered for unbalanced network conditions. The performance of the modified sliding mode control (SMC) in the mentioned unbalanced conditions is evaluated using simulations in MATLAB/Simulink. The results confirm that the proposed technique reduces the pulsations of active and reactive powers considerably in comparison with the normal SMC strategy.
不平衡网络条件下并网电压逆变器的锁相无环滑模功率控制
本文提出了一种不平衡网络条件下并网电压逆变器的锁相无环功率控制方法。该技术的主要优点是实现成本低,控制策略简单。这些优点是通过所提出的补偿策略消除锁相环(PLL)功能来实现的。锁相环功能被认为是系统中昂贵的一部分。因此,消除锁相环可以更简单地实现功率控制,并降低系统成本。提出了一种基于有功和无功补偿反馈的普通滑模功率控制方法。在不平衡网络条件下,考虑了三相电压不平衡角度和电压幅值不相等两种情况。在MATLAB/Simulink中对上述不平衡条件下修正滑模控制(SMC)的性能进行了仿真评估。结果表明,与常规的SMC策略相比,该方法大大降低了有功功率和无功功率的脉动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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