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Disturbance-Observer-Based DC-Bus Voltage Control for Ripple Mitigation and Improved Dynamic Response in Two-Stage Single-Phase Inverter System

机译:基于扰动观测器的直流母线电压控制,用于两阶段单相逆变器系统中的纹波抑制和改善的动态响应

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Two-stage single-phase inverter system has found many applications in distributed generators and grid-connected systems. However, the existence of double-line frequency ripple on the dc-bus voltage due to single-phase inverter's operation has given rise to some design and reliability issues. Some of these are the degradation in the quality of inverter's output voltage and shortening of dc-bus capacitor's lifetime. The problem is rooted in the controller design of the front-end dc-dc converter, which is often designed based on a simplified mathematical model of the dc-dc converter that fails to account for some complex phenomena, such as system's nonlinearities and circuit parameter variations due to temperature and aging effects. In this paper, a disturbance-observer-based control is proposed where these unmodeled effects are treated in the form of lumped disturbance and compensated for in a feed-forward manner. The major advantage of this control solution is that only minimal plant information is needed for controller design and that a decoupled composite controller can be realized, where the feedback compensator is designed to meet certain stability criteria while the disturbance-observer-based feed-forward compensator is designed to handle fast transient events. A prototype of a dual-active-bridge (DAB) dc-dc converter implemented with disturbance-observer-based control is constructed to verify its effectiveness. Experimental results show that the dynamic response of the DAB converter is significantly improved and the double-line frequency ripple on the dc-bus voltage is effectively suppressed by the proposed control solution.
机译:两级单相逆变器系统在分布式发电机和并网系统中发现了许多应用。但是,由于单相逆变器的运行,直流总线电压上存在双线频率纹波,这引起了一些设计和可靠性问题。其中一些是逆变器输出电压质量的下降以及直流总线电容器寿命的缩短。问题根源在于前端DC-DC转换器的控制器设计,该控制器设计通常是基于DC-DC转换器的简化数学模型设计的,该模型无法解决一些复杂现象,例如系统的非线性和电路参数由于温度和老化效应而变化。在本文中,提出了一种基于干扰观测器的控制,其中将这些未建模的影响以集总干扰的形式处理并以前馈方式进行补偿。该控制解决方案的主要优点是,仅需最少的设备信息即可进行控制器设计,并且可以实现解耦的复合控制器,其中反馈补偿器设计为满足某些稳定性标准,而基于干扰观测器的前馈补偿器设计用于处理快速瞬态事件。构造了双主动桥(DAB)DC-DC转换器的原型,该原型通过基于干扰观测器的控制实现,以验证其有效性。实验结果表明,该控制方案可显着改善DAB转换器的动态响应,并有效抑制直流总线电压上的双线频率纹波。

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