用fpga实现矩阵变换器中产生换向脉冲的通用逻辑系统

A. Dasgupta, S. Mukherjee, M. Sengupta, P. Syam, A. K. Chattopadhyay
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引用次数: 6

摘要

矩阵变换器本质上是一种强制整流的环变换器,它具有任何工频变换器所需要的大部分特性,如简单紧凑的电源电路,产生任意幅值和频率的负载电压,正弦输入和输出电流,任何负载的可调功率因数,再生能力和谐波降低。控制该变换器的一个关键问题是电流换相,因为没有自由轮路径可用于负载电流。本文介绍了一种基于输出电流方向的矩阵变换器半软四步换相技术的FPGA实现。同样的程序可以用于实现三步换相过程。设计了一种适用于所有IGBT的通用和同步换相方案,以便根据所使用IGBT的开关时间,在需要时在尽可能短的时间内顺利进行换相。利用程序模拟器对程序逻辑进行了各种临界条件下的测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of a universal logic system of generating commutating pulses in matrix converters using FPGAs
Matrix converter, which is essentially a forced commutated cycloconverter, has most of the desirable features for any power frequency changers like simple and compact power circuits, generation of load voltage with arbitrary amplitude and frequency, sinusoidal input and output currents, adjustable power factor for any load, regeneration capability and harmonics reduction. A critical issue in control of this converter is current commutation as no freewheel path is available for the load current. In this paper, FPGA implementation of a semi-soft four-step commutation technique based on output current direction in matrix converter is presented. The same program can be used for implementing a three-step commutation process. A universal and synchronous commutation scheme for all the IGBTs is devised so that commutation can smoothly take place as and when required within the minimum possible time depending on the switching times of the IGBT used. The program logic is tested with the program simulator under various critical conditions.
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