基于可变电感的生态友好型电源变换器:基本原理、配置和应用综述

Q1 Engineering
Zijie He;Guidong Zhang;Zexiang Chen;Samson S. Yu
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引用次数: 0

摘要

可再生能源系统、电动汽车和发光二极管等现代环保产业推动了电力电子技术的进步。基于开关的功率转换器具有有限的工作范围,并且可能在输出电压和电流中引起显著的谐波和振荡。引入可变电感器可以通过改变电感来帮助解决这个问题,而无需求助于极端的开关占空比。尽管可变电感器具有优势,但对其在功率变换器设计中的应用仍缺乏全面的综述。对电力变换中的变电感控制进行了全面深入的综述,包括其意义、工作原理、核心结构、建模方法和典型应用。传统上,电感器在其线性磁性区域中工作;它在功率变换器中的电感被认为是恒定的,并且变换器在固定的工作条件下工作。然而,在实际应用中,功率转换器需要广泛的工作条件。这通常是通过改变开关的占空比来实现的。综述了可变电感的工作原理,介绍了可变电感控制在电力变换器中的应用,这将进一步帮助电力电子研究人员和工程师设计灵活、有弹性的电力变换器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review of Variable-Inductor-Based Power Converters for Eco-Friendly Applications: Fundamentals, Configurations, and Applications
Modern eco-friendly industries such as renewable energy systems, electric vehicles (EVs), and light-emitting diodes (LEDs) have led to technological advancements in power electronics. Switching-based power converters have limited working ranges and can cause significant harmonics and oscillations in the output voltage and current. Introducing variable inductors can help solve this problem by changing the inductance without resorting to extreme switch duty cycles. Despite their advantages, there is still a lack of comprehensive reviews of variable inductor applications in power converter design. A thorough and in-depth review of variable inductance control in power conversion is presented, including its significance, working principle, core structure, modeling method, and typical applications. Traditionally, an inductor works in its linear magnetic region; its inductance in a power converter is considered constant, and the converter operates under fixed working conditions. However, a broad range of working conditions is required for power converters in practical applications. This is typically realized by changing the duty cycles of the switches. The working principle of variable inductance is reviewed, and the application of variable inductance control in power converters is presented, which will further help power electronics researchers and engineers design flexible and resilient power converters.
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来源期刊
Chinese Journal of Electrical Engineering
Chinese Journal of Electrical Engineering Energy-Energy Engineering and Power Technology
CiteScore
7.80
自引率
0.00%
发文量
621
审稿时长
12 weeks
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