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Design and implementation of a mobile single-phase AC power supply for land vehicles with 28V/200V dual voltage alternators

机译:具有28V / 200V双电压交流发电机的陆地车辆移动单相交流电源的设计与实现

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In land vehicles with high-power electrical loads, other than the low-voltage DC bus (14V, 28V, or 42V) for the low-power conventional loads, a high-voltage bus, e.g., 200V DC, is required for high-power loads such as hotel loads and electrically-assisted propulsion systems. In addition, some advanced electrical loads including luxury loads and AC power point require 120V, 60 Hz AC voltage. These land vehicles include heavy-duty, fire-fighting, and military vehicles. There are two traditional approaches in obtaining a dual DC voltage bus system. The first one is to obtain the low-voltage DC from the alternator and boost it to the high-voltage DC. The second method is to obtain the high-voltage DC directly from the alternator and reduce it to the low-voltage. Both approaches require additional step-up or step-down power conversion stages, which inherently result in a reduced efficiency. In this paper, a new approach with a 28V/200V dual voltage alternator is considered. This system avoids the additional power conversion stage and, as a result, increases the efficiency of the system. The primary objective of this paper is to demonstrate the design and operation of a high power density, 2.5 kW, single-phase, DC/AC pulse width modulated (PWM) inverter. The IGBT-based inverter operates from the 200V DC voltage output of the dual voltage alternator and consists of a low-pass LC filter at its output. The RMS value of the AC output voltage attained from the mobile power supply is 120V at a frequency of 60Hz. The sinusoidal pulse width modulation (SPWM) method is used as the control technique for the purpose of inverter switching. These PWM control signals are generated using a digital signal processor (DSP) and are eventually used to drive the gates of the IGBT switches of the proposed inverter. Due to the simplified power stage and the usage of an efficient DSP-based modulation technique, the total harmonic distortion (THD) ofthe output voltage is fairly low (less than 2%) and a relatively small overall inverter size is achieved. A detailed description of the system along with simulation and experimental results are presented in this paper.
机译:在具有高功率电负载的陆地车辆中,用于低功耗传统负载的低压直流总线(14V,28V或42V),高压总线(例如,200V DC)是高电压总线,高压总线电源负载,如酒店负载和电气辅助推进系统。此外,一些先进的电负载,包括豪华负载和交流电源点需要120V,60 Hz AC电压。这些土地车辆包括重型,消防和军用车辆。获得双直流电压总线系统有两种传统方法。第一个是从交流发电机获得低压DC并将其提升到高压DC。第二种方法是直接从交流发电机获得高压DC并将其降低到低压。两种方法都需要额外的升压或降压功率转换阶段,其固有地导致效率降低。在本文中,考虑了一种具有28V / 200V双电压交流发电机的新方法。该系统避免了额外的电源转换阶段,结果,提高了系统的效率。本文的主要目的是展示高功率密度,2.5kW,单相,直流/交流脉冲宽度调制(PWM)逆变器的设计和操作。基于IGBT的逆变器从双电压交流发电机的200V直流电压输出操作,并由其输出处于低通LC滤波器组成。从移动电源获得的AC输出电压的RMS值以60Hz的频率为120V。正弦脉冲宽度调制(SPWM)方法用作逆变器切换目的的控制技术。使用数字信号处理器(DSP)生成这些PWM控制信号,并且最终用于驱动所提出的逆变器的IGBT开关的栅极。由于简化的功率阶段和基于高效的DSP的调制技术的使用,输出电压的总谐波失真(THD)相当低(小于2%),并且实现了相对较小的整体逆变器尺寸。本文提出了对系统以及模拟和实验结果的详细描述。

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