Decoupled control of the active and reactive power in three-phase PWM rectifiers based on non-linear control strategies

J. Espinoza, G. Joós, L. Morán
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引用次数: 54

Abstract

Pulse-width modulated (PWM) current-source and voltage-source rectifiers (CSRs and VSRs) present several advantages as compared to thyristor line commutated and diode bridge rectifiers, respectively. Indeed, low supply current harmonic distortion and displacement power factor control including unity displacement power factor operation, can be obtained. However, the models of the CSRs and VSRs are nonlinear, which involves their analysis and certainly their control. This complexity is somehow avoided when using direct line current control and relatively high switching frequencies (>1 kHz). Unfortunately, this approach does not guarantees the stability of the rectifier, results in a dynamic that is load dependant and covers low to medium power level applications. This paper proposes the application of a nonlinear control strategy in combination with a high performance low switching frequency space vector modulation technique. The approach can be used in high power applications and allows the independent control of the two supply current components (active and reactive), which admits the converter to either generate or absorb reactive power according to a given set point while operates as an independent DC power supply. The paper includes a complete formulation of the system equations and a controller design procedure. Simulated results confirm the validity of theoretical considerations.
基于非线性控制策略的三相PWM整流器有功与无功解耦控制
脉宽调制(PWM)电流源整流器和电压源整流器(CSRs和VSRs)与晶闸管线换流和二极管桥式整流器相比,分别具有几个优点。实际上,可以获得低电源电流谐波畸变和位移功率因数控制,包括单位位移功率因数操作。然而,csr和VSRs的模型是非线性的,这涉及到它们的分析和控制。当使用直流电流控制和相对较高的开关频率(> - 1khz)时,这种复杂性在某种程度上可以避免。不幸的是,这种方法不能保证整流器的稳定性,导致与负载相关的动态,并且适用于低到中等功率水平的应用。本文提出了将非线性控制策略与高性能低开关频率空间矢量调制技术相结合的应用。该方法可用于大功率应用,并允许独立控制两个电源电流组件(有功和无功),这允许转换器根据给定的设定点产生或吸收无功功率,同时作为独立的直流电源运行。文中给出了系统方程的完整公式和控制器的设计过程。仿真结果证实了理论考虑的有效性。
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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