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DC-Link Voltage Balance Control Strategy Based on Multidimensional Modulation Technique for Quasi-Z-Source Cascaded Multilevel Inverter Photovoltaic Power System

机译:基于多维调制技术的准Z源级联多电平逆变器光伏发电系统直流环节电压平衡控制策略

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摘要

A dc-link voltage balancing control strategy for quasi-Z-source cascaded H-bridge (qZS-CHB) inverter photovoltaic (PV) power system is proposed by using multidimensional pulse-width modulation (MD-PWM) technique. The qZS-CHB PV system usually employs proportional-integral (PI) regulators based closed-loop control methods to balance dc-link voltages, combining with distributed maximum power point tracking and grid-tie power control. These require significant control computations and hardware resources for multiple modules based qZS-CHB system. The proposed MD-PWM for the qZS-CHB inverter performs shoot-through behavior based on geometric representation of the output voltage ranges of each H-bridge in coordinate axes. All possible switching sequences of the qZS-CHB inverter are taken into account to choose the most suitable sequence that can balance dc-link voltages of qZS modules in the qZS-CHB PV power system. When compared with the state-of-the-art of voltage balancing control methods, the proposed control strategy has advantages: 1) The computation is low because there is no PI controller, while the stability of the whole system is improved; and 2) there is a reliable balancing capability with fast regulation of dc-link voltages, owing to no extra controller parameters and handling the voltage balance in each control cycle. Simulation and experimental results of qZS-CHB inverter based grid-tie PV power system verify the proposed dc-link voltage balancing control technique.
机译:利用多维脉宽调制(MD-PWM)技术,提出了准Z源级联H桥逆变器光伏(PV)电源系统的直流环节电压平衡控制策略。 qZS-CHB光伏系统通常采用基于比例积分(PI)调节器的闭环控制方法来平衡直流母线电压,并结合分布式最大功率点跟踪和并网功率控制。对于基于qZS-CHB的多个模块,这些需要大量的控制计算和硬件资源。为qZS-CHB逆变器建议的MD-PWM基于坐标轴中每个H桥的输出电压范围的几何表示来执行直通行为。考虑qZS-CHB逆变器的所有可能的开关顺序,以选择最合适的顺序,以平衡qZS-CHB光伏电源系统中qZS模块的直流母线电压。与目前最先进的电压平衡控制方法相比,该控制策略具有以下优点:1)由于没有PI控制器,计算量小,从而提高了整个系统的稳定性; 2)由于没有额外的控制器参数并在每个控制周期内处理电压平衡,因此具有可靠的平衡能力,可以快速调节直流母线电压。基于qZS-CHB逆变器的并网光伏发电系统的仿真和实验结果验证了所提出的直流母线电压平衡控制技术。

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