级联多电平逆变器高频开关新方法在光伏中的应用

S. Mosazadeh, S. Fathi, H. Radmanesh
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引用次数: 3

摘要

近年来,人们对多电平逆变器的使用越来越感兴趣。在不同类型的多电平逆变器中,级联逆变器具有结构简单、模块化、开关电压应力小、元件数量少等优点,是可再生能源应用中功率调节的良好选择。为了实现多电平逆变器单元间的功率均衡分配,提出了不同的开关技术。多电平逆变器输出电压的低次谐波和间谐波是直流链路电容电压纹波引起的问题。为了解决这些问题,需要使用大型直流电容器,这增加了系统的成本和尺寸,降低了系统的使用寿命和可靠性。在多电平开关技术中,同相配置脉宽调制(IDPPWM)的谐波量最低。在这种方法中,逆变器单元的功率输出是不相等的。本文针对光伏应用,提出了一种改进IDPPWM系统功率共享的方法。并在直流链路电压纹波和直流链路电容量方面与同类开关方式进行了比较。开关模式应用于7电平逆变器,其中每个h桥或单元连接到在最大功率点(MPP)工作的光伏阵列。7级逆变器提供一个独立的交流感性负载。利用MATLAB/SIMULINK软件进行了仿真,结果证实了所提出的方法在平衡不同逆变器单元之间的功率分配和需要更小的直流链路电容方面的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New high frequency switching method of cascaded multilevel inverters in PV application
In recent years, interest of using multilevel inverters have been increased. Among different types of multilevel inverters cascaded one is a good choice of power conditioning in renewable energy application, because of their simplicity, modularity, low switches voltage stress and less number of components. Different switching techniques have been proposed for equal power sharing between cells of multilevel inverter. Low order harmonics and inter harmonics in output voltage of multilevel inverter are problems caused by voltage ripple in dc link capacitors. For solving these problems, a large DC capacitor is needed which increases cost and size of the system and reduces lifetime and reliability. Among multilevel switching techniques, In Phase Disposition pulse width modulation (IDPPWM) have the lowest amount of harmonics. In this method power delivery of the inverter cells are not equal. In this paper a method that improves power sharing in IDPPWM is proposed for photovoltaic (PV) application. This method is compared with similar switching patterns in aspects of dc link voltage ripple and amount of DC link capacitor. The switching pattern is applied to a 7 level inverter in which each H-bridge or cell is connected to a PV array operated at maximum power point (MPP). The 7 level inverter supplies a standalone AC inductive load. Simulations are implemented using MATLAB/SIMULINK software and the results confirm effectiveness of the proposed method in balancing power sharing among different inverter cells and requiring smaller DC link capacitors.
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