A new topology of non-isolated AC-DC quadratic boost converter with enhanced power traits

Istiak Ahmed, F. Azad, Shameem Hasan, Abdullah Al Mamun, Khosru M. Salim
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Abstract

A novel AC-DC quadratic boost converter (QBC) topology is presented in this paper which can provide higher power factor (PF), lower total harmonic distortion (THD) and higher voltage when compared to a conventional AC-DC boost convertero This is achieved by using additional switched capacitor and switched inductor in the power processing stage. The presented converter is analyzed theoretically, and a voltage gain equation is derived. A simulation model is created to evaluate the converter performance under various duty cycles, switching frequency, and changing output load. The input PF, THD, and voltage gain of the simulated model were compared with conventional converter to determine the validity of the suggested converter circuit. The results show that the efficiency, PF, THD and voltage gain value reaches approximately 97.9%, 0.98, 16.14, and 2.83 respectively at a duty cycle of 50% with fixed output load of 100 Ω. A dual loop voltage and current controller is also arrayed with the proposed circuit which allows further enhancement in PF (0.997) and THD (7.45%). This converter can be a suitable option for systems where isolation is not necessary but high PF, high voltage gain and low THD are required.
功率特性更强的非隔离交直流二次升压转换器新拓扑结构
本文介绍了一种新型交直流二次升压转换器(QBC)拓扑结构,与传统的交直流升压转换器相比,它能提供更高的功率因数(PF)、更低的总谐波失真(THD)和更高的电压。对所介绍的转换器进行了理论分析,并得出了电压增益方程。创建了一个仿真模型,以评估转换器在不同占空比、开关频率和不断变化的输出负载下的性能。将仿真模型的输入 PF、总谐波失真和电压增益与传统转换器进行比较,以确定所建议的转换器电路的有效性。结果表明,在占空比为 50%、输出负载固定为 100 Ω 时,效率、PF、THD 和电压增益值分别达到约 97.9%、0.98、16.14 和 2.83。该电路还采用了电压和电流双环控制器,从而进一步提高了 PF 值(0.997)和 THD 值(7.45%)。这种转换器适用于无需隔离但要求高 PF、高电压增益和低总谐波失真(THD)的系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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