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Comprehensive Review on Main Topologies of Impedance Source Inverter Used in Electric Vehicle Applications

机译:电动汽车应用中使用阻抗源逆变器主要拓扑综述

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摘要

Power electronics play a fundamental role for electric transportation, renewable energy conversion and many other industrial applications. They have the ability to help achieve high efficiency and performance in power systems. However, traditional inverters such as voltage source and current source inverters present some limitations. Consequently, many research efforts have been focused on developing new power electronics converters suitable for many applications. Compared with the conventional two-stage inverter, Z-source inverter (ZSI) is a single-stage converter with lower design cost and high efficiency. It is a power electronics circuit of which the function is to convert DC input voltage to a symmetrical AC output voltage of desired magnitude and frequency. Recently, ZSIs have been widely used as a replacement for conventional two-stage inverters in the distributed generation systems. Several modifications have been carried out on ZSI to improve its performance and efficiency. This paper reviews the-state-of-art impedance source inverter main topologies and points out their applications for multisource electric vehicles. A concise review of main existing topologies is presented. The basic structural differences, advantages and limitations of each topology are illustrated. From this state-of-the-art review of impedance source inverters, the embedded quasi-Z-source inverter presents one of the promising architectures which can be used in multisource electric vehicles, with better performance and reliability. The utilization of this new topology will open the door to several development axes, with great impact on electric vehicles (EVs).
机译:电力电子产品在电力运输,可再生能源转换和许多其他工业应用中起着基本作用。他们有能力帮助在电力系统中实现高效率和性能。然而,传统的逆变器如电压源和电流源逆变器呈现了一些限制。因此,许多研究努力一直专注于开发适用于许多应用的新型电力电子转换器。与传统的两级逆变器相比,Z源逆变器(ZSI)是一种单级转换器,具有较低的设计成本和高效率。它是一种功率电子电路,其功能是将DC输入电压转换为所需幅度和频率的对称交流输出电压。最近,ZSI被广泛用作分布式发电系统中传统的两级逆变器的替代品。已经在ZSI进行了几种修改,以提高其性能和效率。本文介绍了最先进的阻抗源逆变器主拓扑,并指出了它们对多源电动车辆的应用。提出了对主要现有拓扑的简明审查。说明了每个拓扑的基本结构差异,优点和局限性。从这种最先进的阻抗源逆变器审查,嵌入式准Z源逆变器呈现出可在多源电动车辆中使用的有希望的架构之一,具有更好的性能和可靠性。这种新拓扑的利用将打开几个开发轴,对电动车辆(EVS)产生很大影响。

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