Fast steady state solution of adjustable speed drives for harmonic assessment

Juan Segundo Ramírez, E. Bárcenas, A. Medina, V. Cárdenas
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引用次数: 1

Abstract

This contribution provides comprehensive development procedures and mathematical models of an adjustable speed drive (ASD) for steady-state solutions. A complete representation of the ASD is employed, which includes the detailed models of the diode rectifier and of the inverter. The power electronic switches are efficiently represented through a smooth function that allows a larger integration step to be used without loss of precision in the solution. An efficient technique in the time domain for the computation of the periodic steady-state solution of electric systems including ASDs based on a discrete exponential matrix (DEE) and the Poincaré map is used. Simulation results are compared with the data obtained in an experimental prototype.
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快速稳定的解决方案的可调速度驱动器谐波评估
这一贡献提供了一个可调速度驱动器(ASD)的稳态解决方案的综合开发程序和数学模型。采用了ASD的完整表示,其中包括二极管整流器和逆变器的详细模型。电力电子开关通过平滑函数有效地表示,允许在不损失解决方案精度的情况下使用更大的集成步骤。提出了一种基于离散指数矩阵(DEE)和poincar映射的电力系统周期稳态解的时域计算方法。仿真结果与实验样机数据进行了比较。
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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