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Enhanced double flying capacitor multicell power converter controlled with a new switching pattern

机译:采用新开关模式控制的增强型双飞跨电容器多节功率转换器

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摘要

This study proposes an enhanced topology for pulse-width-modulated double flying capacitor multicell (DFCM) converter controlled with a new switching pattern in order to reduce voltage diversity and stored energy of flying capacitor (FC) to augment converter's integrity and modularity. The proposed power converter is a hybrid topology realised by cascade connection of DFCM and cascaded H-bridge (CHB) converters while combining, employing, and featuring advantages of both converters. The dc voltage sources and also power switches forming CHB converters’ structure in the proposed hybrid topology possess low voltage-ratings, hence imposing low additional costs and prices on DFCM converter whereas improving and enhancing output voltage power quality significantly by increasing the number of output voltage-levels and improving output voltage frequency spectrum. This progress results in reducing the bulky and costly FCs, their voltage ratings and stored energy. The FC voltages of DFCM topology in the proposed hybrid converter get stabilised naturally at their requisite voltage-levels because of the redundant charging/discharging states. First, experimental measurements of the three-cell-seven-level DFCM are provided. Afterward, simulation results and experimental observations of 15-level enhanced DFCM converter are presented to verify and validate the effectiveness and advantages of the proposed topology as well as its suggested control and modulation strategy.
机译:这项研究为采用新的开关模式控制的脉宽调制双飞电容器多节(DFCM)转换器提出了一种增强的拓扑,以减少飞散电容器(FC)的电压多样性和存储能量,以增强转换器的完整性和模块化。提出的功率转换器是一种混合拓扑,它是通过将DFCM和级联H桥(CHB)转换器级联连接而实现的,同时结合,采用了这两种转换器并具有其优点。在提出的混合拓扑中,直流电压源以及构成CHB转换器结构的电源开关均具有低电压额定值,因此对DFCM转换器施加了较低的附加成本和价格,而通过增加输出电压的数量显着改善和提高了输出电压的电能质量电平并改善输出电压频谱。这一进步导致减少了笨重且昂贵的FC,其额定电压和存储的能量。由于冗余的充电/放电状态,所提出的混合转换器中的DFCM拓扑的FC电压自然稳定在其所需的电压水平。首先,提供了三单元七级DFCM的实验测量。然后,给出了15级增强DFCM转换器的仿真结果和实验观察结果,以验证和验证所提出拓扑的有效性和优势,以及其建议的控制和调制策略。

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