双向PWM升压整流器的控制算法设计与实现

C. Suru, M. Linca, C. Preda
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引用次数: 1

摘要

本文的目的是设计和实现一种能够处理双向能量流的PWM升压整流器的控制算法。为了实现这一目标,必须对升压整流器控制回路进行调整,使其能够从电网中吸收有功功率,并以恒定的输出电压将其转移到直流负载,同时也使整流器能够将从直流链路摄取的能量产生回电网,使用直流链路电容器作为中间能量罐。事实将证明,整流运行和逆变运行之间的转换是自动完成的,无需人工操作人员或专门设计的系统的干预。在一个完整的Matlab Simulink模型上验证了控制算法的正确实现和整定,该模型包括整流器系统的所有部分。仿真结果表明,对于阶跃变化有源负载,直流电压控制器的调谐结果是正确的,系统的整体运行也是正确的。由于升压整流器控制算法类似于并联有源滤波器控制算法,因此采用间接电流控制方法,最适合此目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control algorithm design and implementation for a bidirectional PWM boost rectifier
The aim of this paper is the design and implementation of the control algorithm of a PWM boost rectifier capable to handle bidirectional energy flow. For this goal, the boost rectifier control loops must be tuned for the proper operation of absorbing active power from the power grid and transfer it to the dc load at constant output voltage, and also to give the rectifier the ability to generate back to the power grid the energy intake from the dc-link, using the dc-link capacitor as intermediary energy tank. It will be proved that the transition between rectifier operation and inverter operation is done automatically, without the intervention of the human operator or of a specially designed system. The correct implementation and tuning of the control algorithm was validated on a complete Matlab Simulink model which includes in detail all the sections of the rectifier system. The results obtained by simulation proved the correct answer of the tuned dc-link voltage controller and the overall operation of the system for a step changing active load. Because the boost rectifier control algorithm is similar to shunt active filters control algorithm, the indirect current control approach was adopted, which is the most suitable for this purpose.
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