无换流问题的单相级联升压AC-AC变换器的性能与分析

D. Osheba, Sayed M. Ahmed, A. Lashine
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引用次数: 0

摘要

本文中的单相级联AC-AC变换器提供了解决电能质量问题的升压能力。高稳态性能、输入端的功率因数几乎一致、动态响应快是所提出的变换器的性能特点。级联单元的数量可以用来获得高电压增益。在级联连接中,一个单元的基本架构只需要四个具有低额定电压的IGBT开关。由于开发了合适的基于pwm的控制机制,即使其中一个级联单元发生故障,转换器也可以保持运行,同时获得所需的电压增益。此外,它还可以解决单相交流变换器的换相问题。建议的交流-交流变换器可以是短路和开路的,而不会通过采用基本的开关单元结构和耦合电感损坏开关器件。介绍了级联变换器的工作模式和数学分析。利用MATLAB/Simulink进行计算机仿真,验证了该技术的有效性和可靠性。此外,还在实验室搭建了实验装置,验证了系统的实用性,并在各种条件下进行了测试。理论和实验数据已经得到了很好的吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance and Analysis of Single-Phase Cascaded Boost AC-AC Converter without Commutation Problem
The single-phase cascaded AC-AC converter in this article presents the capacity to boost for problems with power quality. High steady-state performance, a power factor at the input side that is almost unity, and a quick dynamic response are the proposed converter performance characteristics. The number of cascaded units can be used to get a high voltage gain. In the cascaded connection, the basic architecture of one unit requires just four IGBT switches with low-voltage ratings. The converter may keep running while achieving the required voltage gain even if one of the cascaded units fails thanks to a suitable PWM-based control mechanism that is developed. Furthermore, it can solve the commutation problem in singlephase AC-AC converters. The suggested AC-AC converters may be short-and open-circuited without damaging the switching devices by employing a basic switching cell construction and coupled inductors. The operation modes and mathematical analysis for the cascaded converter are described. The proposed technique’s effectiveness and reliability are proved using computer simulation using MATLAB/Simulink. In addition, an experimental setup for the system is built on the laboratory to confirm its practicability and tested under various conditions. Already, the excellent match between theoretical and experimental data is obtained.
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