Disturbance-Observer Based control for PWM Rectifiers Under Unbalanced Grid Conditions

Mohammed Al Razehi, R. Errouissi, Mahdi Debouza, H. Shareef
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引用次数: 1

Abstract

This paper presents the design and experimental validation of a current control technique for Pulse-width modulated (PWM) rectifiers under both balanced and unbalanced grid voltages. In particular, unbalanced grid voltages can cause double fundamental frequency oscillations in the DC-link voltage. These DC-link voltage oscillations can be removed by setting the grid current to accurately track a specific current reference. In this paper, the proposed controller utilizes a cascaded control scheme comprising of an outer voltage loop and an inner current loop. The outer loop controller is designed to generate the specific current reference needed to maintain the DC-link voltage constant and at its reference. The inner current loop consists of a state-feedback controller coupled with a disturbance observer to ensure accurate tracking of the current reference. The current controller is designed in the $\alpha\beta$ reference to ensure accurate regulation of both balanced and unbalanced grid currents needed to suppress the DC-link voltage oscillations. To validate the effectiveness of the proposed controller, experimental tests were conducted and showcased that the control scheme is able to achieve the desired control objectives with excellent results.
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不平衡电网条件下基于扰动观测器的PWM整流器控制
本文介绍了在平衡和不平衡电网电压下脉宽调制(PWM)整流器电流控制技术的设计和实验验证。特别是,电网电压不平衡会导致直流电压出现双基频振荡。这些直流链路电压振荡可以通过设置电网电流来精确地跟踪特定的电流基准来消除。在本文中,所提出的控制器采用由外部电压环和内部电流环组成的级联控制方案。外环控制器的目的是产生特定的参考电流,以维持直流链路电压恒定,并在其参考。内电流环由状态反馈控制器和干扰观测器组成,以确保对电流参考的精确跟踪。在$\alpha\beta$参考文献中设计了电流控制器,以确保精确调节抑制直流链路电压振荡所需的平衡和不平衡电网电流。为了验证所提控制器的有效性,进行了实验测试,表明该控制方案能够达到预期的控制目标,并取得了良好的效果。
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