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首页> 外文期刊>International journal of electrical power and energy systems >Investigation of a cascaded H-bridge photovoltaic inverter under non-uniform insolation conditions by hardware-in-the-loop test
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Investigation of a cascaded H-bridge photovoltaic inverter under non-uniform insolation conditions by hardware-in-the-loop test

机译:非均匀日照条件下级联H桥光伏逆变器的半实物试验研究

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摘要

In this paper, the cascaded H-bridge (CHB) multilevel inverter is employed as a grid connected inverter. This kind of inverter has interesting features compared to conventional inverters, including better efficiency, lower THD, lower common mode current injection, and better waveform quality. Using a series connection of H-bridge cells in this topology, a high modularity is achieved and a stepwise voltage waveform is synthesized at the ac side, leading to lower filter size and complexity. This topology processes the electric power in one stage and does not need any step-up voltage transformer for grid connection. The dynamic performance of control system is studied through simulations and is compared with the conventional approach. In addition, a new voltage estimation approach is proposed to reduce the number of voltage sensors compared to existing methods. The simulation results are presented for a 1.5 kW grid connected 7-level CHB inverter and then the hardware-in-the loop implementation of the CHB inverter is presented to verify the performance of control system.
机译:在本文中,级联H桥(CHB)多电平逆变器被用作并网逆变器。与常规逆变器相比,这种逆变器具有有趣的功能,包括更高的效率,更低的THD,更低的共模电流注入以及更好的波形质量。通过在这种拓扑结构中使用H桥单元的串联,可以实现高模块化,并在ac侧合成逐步电压波形,从而降低了滤波器的尺寸和复杂性。这种拓扑结构以一级方式处理电力,不需要任何升压变压器来进行电网连接。通过仿真研究了控制系统的动态性能,并与常规方法进行了比较。另外,与现有方法相比,提出了一种新的电压估计方法以减少电压传感器的数量。给出了一个1.5 kW并网7级CHB逆变器的仿真结果,然后给出了CHB逆变器的硬件在环实现方式,以验证控制系统的性能。

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