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Modularized multilevel and z-source power converter as renewable energy interface for vehicle and grid-connected applications.

机译:模块化的多级z源电源转换器,可作为可再生能源接口,用于车辆和并网应用。

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摘要

Due the energy crisis and increased oil price, renewable energy sources such as photovoltaic panel, wind turbine, or thermoelectric generation module, are used more and more widely for vehicle and grid-connected applications. However, the output of these renewable energy sources varies according to different solar radiation, wind speed, or temperature difference, a power converter interface is required for the vehicle or grid-connected applications.;Thermoelectric generation (TEG) module as a renewable energy source for automotive industry is becoming very popular recently. Because of the inherent characteristics of TEG modules, a low input voltage, high input current and high voltage gain dc-dc converters are needed for the automotive load. Traditional high voltage gain dc-dc converters are not suitable for automotive application in terms of size and high temperature operation. Switched-capacitor dc-dc converters have to be used for this application. However, high voltage spike and EMI problems exist in traditional switched-capacitor dc-dc converters. Huge capacitor banks have to be utilized to reduce the voltage ripple and achieve high efficiency. A series of zero current switching (ZCS) or zero voltage switching switched-capacitor dc-dc converters have been proposed to overcome the aforementioned problems of the traditional switched-capacitor dc-dc converters. By using the proposed soft-switching strategy, high voltage spike is reduced, high EMI noise is restricted, and the huge capacitor bank is eliminated. High efficiency, high power density and high temperature switched-capacitor dc-dc converters could be made for the TEG interface in vehicle applications. Several prototypes have been made to validate the proposed circuit and confirm the circuit operation.;In order to apply PV panel for grid-connected application, a low cost dc-ac inverter interface is required. From the use of transformer and safety concern, two different solutions can be implemented, non-isolated or isolated PV inverter. For the non-isolated transformer-less solution, a semi-Z-source inverter for single phase photovoltaic systems has been proposed. The proposed semi-Z-source inverter utilizes only two switching devices with doubly grounded feature. The total cost have been reduced, the safety and EMI issues caused by the high frequency ground current are solved. For the transformer isolated solution, a boost half-bridge dc-ac micro-inverter has been proposed. The proposed boost half-bridge dc-dc converter utilizes only two switching devices with zero voltage switching features which is able to reduce the total system cost and power loss.
机译:由于能源危机和油价上涨,可再生能源,例如光伏面板,风力涡轮机或热电发电模块,越来越多地用于车辆和并网应用。但是,这些可再生能源的输出会根据不同的太阳辐射,风速或温度差而变化,车辆或并网应用需要电源转换器接口。;热电发电(TEG)模块作为可再生能源汽车行业最近变得非常流行。由于TEG模块的固有特性,汽车负载需要低输入电压,高输入电流和高电压增益dc-dc转换器。就尺寸和高温操作而言,传统的高压增益dc-dc转换器不适合汽车应用。此应用必须使用开关电容DC-DC转换器。但是,传统的开关电容器dc-dc转换器中存在高压尖峰和EMI问题。必须利用巨大的电容器组来减少电压纹波并实现高效率。为了克服传统开关电容器dc-dc转换器的上述问题,已经提出了一系列的零电流开关(ZCS)或零电压开关电容器dc-dc转换器。通过使用所提出的软开关策略,可以减少高电压尖峰,限制高EMI噪声,并消除了庞大的电容器组。可以为车辆应用中的TEG接口制造高效率,高功率密度和高温开关电容DC-DC转换器。为了验证所提出的电路并确认电路的运行,已经制作了多个原型。为了将光伏面板用于并网应用,需要低成本的DC-AC逆变器接口。从变压器的使用和安全考虑,可以实现两种不同的解决方案,即非隔离式或隔离式光伏逆变器。对于非隔离式无变压器解决方案,已经提出了用于单相光伏系统的半Z源逆变器。提出的半Z源逆变器仅使用两个具有双重接地功能的开关设备。降低了总成本,解决了由高频接地电流引起的安全性和EMI问题。对于变压器隔离解决方案,提出了一种升压半桥直流-交流微逆变器。提出的升压半桥DC-DC转换器仅使用两个具有零电压开关功能的开关器件,从而能够降低总系统成本和功耗。

著录项

  • 作者

    Cao, Dong.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Engineering Electronics and Electrical.;Energy.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 361 p.
  • 总页数 361
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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