一种新型低功率车载谐振逆变器的分析与建模

E. Mohagheghi, A. Keipour, Z. Sudi, M. Moallemi, A. Hajihosseinlu
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引用次数: 0

摘要

在本文中,我们提出了一种新的逆变器,将直流电压转换为所需的交流电压。该逆变器专为可变电感负载和低输出功率应用而设计。我们提出了一种新的简单的PWM方法,使逆变器的输出电流保持在额定输出电流的六倍以上,而不降低输出电压值。此外,基于电路中谐振的简单使用,新的逆变器可以在相对短的时间内将输出电压提高到极高的幅度。这些特点使得所提出的逆变器可用于一些工业应用,如电动汽车。电路的新结构由一个单向开关、两个电感(用于传递能量)、一个快速二极管和一个电容器组成。用很少的元件,该系统改变输入直流电压为所需的正弦交流电压。该系统的优点是:电力电子器件数量少,只需一个简单的开关;它不需要死区时间,尽管传统的逆变器需要开关之间的死区时间来防止短路;电路体积非常小;总谐波失真(THD)大大降低;它的工作效率很高。这种逆变器的另一个优点是电路在不使用任何DC-DC转换器的情况下将输入电压升压或抑制到理想的输出电压的能力。当输出电流增加时,它能灵活地保持输出电压恒定,并能产生比输入电压高得多的输出电压。与传统的电压源逆变器相比,该方法的主要缺点是,尽管它的功率很小,但它使用了更多的储能元件。我们用模拟来证明所有这些陈述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analyzing and modeling of a new resonance inverter for low power vehicular application
In this paper we proposed a novel inverter to convert a DC voltage to a desired AC voltage. This inverter is designed for variable inductive loads and low output power applications. We proposed a novel simple PWM method which enables the inverter to keep the output current at six times more than the rated output current, without reducing output voltage value. In addition, based on a simple use of resonance in the circuit, the new inverter can raise the output voltage to extremely high amplitude for a relatively short time. These characteristics make the proposed inverter is useful for some industrial applications such as electrical vehicle. The new configuration of the circuit consists of a unidirectional switch, two inductors (to transfer energy), a fast diode and a capacitor. With very few elements, this system changes the input DC voltage to a desired sinusoidal AC voltage. Some advantages of this system are: number of power electronics devices is low - it only uses a simple switch; it does not need dead time, in spite of conventional inverters which need a dead time between switches to prevent from short-circuiting; volume of the circuit is very small; the total harmonic distortion (THD) is greatly reduced; and it works with high efficiency. Another advantage of this inverter is capability of the circuit in boosting or bucking the input voltage to a desirable output voltage without using any DC-DC converters. It is flexible in keeping output voltage constant when the output current is increased, and it can produce the extremely higher output voltage than input voltage. The main drawback of the method, compared with conventional voltage source inverters, is that it uses more energy storage elements in spite of its low volume of power. We used simulations to prove all these statements.
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