Three-phase three-level unity power factor PWM rectifier using DSP

S. A. Mussa, H.B. Mohr
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引用次数: 3

Abstract

This article presents the study and implementation of a three-phase three-level pre-regulator rectifier with digital control using a DSP. The structure has a common capacitive center point that allows the three-level operation and a low blocking-voltage stress on the power switches (half of dc link voltage). The reduction of blocking voltage allows the use of low cost and low losses power devices, increasing the efficiency and the power density with reduced production cost. The control technique used aims to obtain power factor correction (PFC), regulated and balanced output voltages. With the advance of DSP controllers, digital control is increasingly used in power converts systems and offers a number of advantages like more flexibility in modification code and less sensitive to noise. However, sampling time delay, resolution of A/D converter, word length of DSP and instructions cycle time are disadvantages over analog control. Nowadays, control optimized DSP's deliver high performance, great code efficiency and optimal peripheral integration for the digital control with high level on-chip integration to deliver system cost reduction, and powerful computational abilities that enable software innovation then reducing disadvantages of a digital control.
采用DSP的三相三电平单位功率因数PWM整流器
本文介绍了一种基于DSP的数字控制三相三电平预稳压整流器的研究与实现。该结构具有一个共同的电容中心点,允许三电平操作和电源开关上的低阻塞电压应力(直流链路电压的一半)。阻断电压的降低允许使用低成本和低损耗的功率器件,在降低生产成本的同时提高效率和功率密度。所使用的控制技术旨在获得功率因数校正(PFC),调节和平衡输出电压。随着DSP控制器的发展,数字控制越来越多地应用于功率转换系统,具有修改代码更灵活、对噪声不敏感等优点。然而,采样时间延迟、A/D转换器的分辨率、DSP字长和指令周期时间是模拟控制的缺点。如今,控制优化DSP为数字控制提供高性能,高代码效率和最佳外设集成,具有高水平的片上集成,以降低系统成本,以及强大的计算能力,使软件创新能够减少数字控制的缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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