基于观测器的低传感器三相lc滤波并网逆变器SMC控制器设计

Han Li, Weimin Wu, Min Huang
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摘要

目前,基于全局稳定性的滑模控制(SMC)控制器已成功应用于三相lcl滤波并网逆变器(GCI)中。然而,为了实现系统的全局稳定性,需要所有三个状态向量都提供完整的信息,这将使用许多传感器,增加了成本和复杂性。本文提出了一种基于观测器的三相lcl滤波GCI的SMC控制器。采用离散状态观测器估计SMC控制器所需的状态向量(逆变器侧电流和电容电压)。此外,还详细介绍了控制器和离散状态观测器的设计。在一个3kW系统上的实验结果证明了所提控制策略的有效性。
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Design of Observer-Based SMC Controller for Three-Phase LCL-Filtered Grid-Connected Inverters with Less Sensors
Currently, Sliding Mode Control (SMC) controller based on global stability has been successfully applied to three-phase LCL-flltered Grid-Connected Inverter (GCI). However, to achieve the global stability of the system, all three state vectors are required to provide the full information, which would utilize many sensors, increasing the cost and complexity. In this paper, an observer-based SMC controller for three-phase LCL-flltered GCI is proposed. The discrete state observer is adopted to estimate the state vectors (inverter-side current and capacitor voltage) needed for the SMC controller. In addition, the detailed design of the SMC controller and the discrete state observer are introduced. The experimental results obtained from a 3kW system demonstrate the effectiveness of the proposed control strategy.
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