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Combined Reactive Power Injection Modulation and Grid Current Distortion Improvement Approach for H6 Transformer-Less Photovoltaic Inverter

机译:无变压器H6光伏逆变器无功注入调制与电网电流畸变的组合改进方法

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摘要

In this paper, a combined reactive power modulation and grid current distortion improvement approach is proposed for an H6 transformer-less full-bridge single-phase photovoltaic (PV) grid-connected inverter. H6 transformer-less inverters with traditional modulation and control strategies may not satisfy the requirement of reactive power compensation or may result in more severe zero-crossing current distortion. Therefore, contrary to the traditional modulation, a novel reactive power injection space vector pulse width modulation (SVPWM) is proposed, which consists of two operation stages-inverter modulation and reactive power modulation. The implementation of SVPWM for reactive power modulation using a digital signal processor is also investigated. Furthermore, to suppress the current zero-crossing distortion in the reactive power injection mode, a global sliding mode function based on the proportion-integration-resonance current controller is designed, and the control law of the global sliding mode is derived. Using the segment modulation and grid current distortion improvement approach, the function of reactive current injection is implemented in commercial PV inverters, and the total harmonic distortion of the grid current is decreased significantly by more than 5% in the low-power segment, under the operating conditions of a lagging or leading power factor of 0.95. The effectiveness and feasibility of the proposed approach are verified through simulation and experiment using a 5-kVA prototype.
机译:本文针对无H6变压器的全桥单相光伏(PV)并网逆变器,提出了一种无功功率调制与电网电流失真相结合的改进方法。具有传统调制和控制策略的H6无变压器逆变器可能无法满足无功功率补偿的要求,或者可能导致更严重的过零电流失真。因此,与传统的调制相反,提出了一种新颖的无功注入空间矢量脉宽调制(SVPWM),其由逆变器调制和无功功率两个工作阶段组成。还研究了使用数字信号处理器实现无功功率调制的SVPWM的实现。此外,为了抑制无功功率注入模式中的电流过零失真,设计了基于比例积分谐振电流控制器的全局滑模函数,并推导了全局滑模的控制规律。使用分段调制和电网电流失真改善方法,在商用光伏逆变器中实现了无功电流注入的功能,在低功率段下,电网电流的总谐波失真在低功率段中显着降低了5%以上。落后或领先的功率因数为0.95的工作条件。通过使用5-kVA原型进行仿真和实验,验证了该方法的有效性和可行性。

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