基于状态观测器的低传感器零稳态误差lcl滤波并网逆变器PBC控制器

Jinpin Zhao, Weimin Wu, H. Chung, F. Blaabjerg
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引用次数: 0

摘要

基于无源控制(PBC)已被应用于lcl滤波并网逆变器(GTI)中。然而,传统的PBC方法在很大程度上依赖于精确的数学模型,当没有准确的模型参数或发生参数漂移时,无法实现零稳态误差。此外,由于lcl滤波GTI的传统PBC控制器使用三个状态变量,因此必须在三相系统中使用十二个传感器(电压和电流),这增加了成本和硬件故障率。为了解决这些问题,本文提出了一种基于状态观测器的改进PBC (SOMPBC)控制器。状态观测器可以节省6个传感器,并且通过两种不同的方式在传统的PBC控制器中插入积分调节器,两种改进的控制方法可以很容易地实现零稳态误差。在MATLAB/Simulink中搭建了仿真平台,并利用DS1202搭建了3kw的实验装置,验证了所提控制方法的正确性和有效性。
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A Novel State-Observer-Based PBC Controller for LCL-Filtered Grid-Tied Inverter with Less Sensors and Zero Steady-State Error
The Passivity-Based Control (PBC) has been adopted in LCL-filtered grid-tied inverter (GTI). However, the conventional PBC method depends much on accurate mathematical model, where zero steady-state error can’t be realized when the accurate model parameters are not available or parameters drift occur. Furthermore, due to the utilizing of three state variables in the conventional PBC controller for LCL-filtered GTI, twelve sensors (voltage and current) must be used in a three phase system, which increase the costs and the failure rate of hardware. In order to handle the problems, a novel state observer based modified PBC (SOMPBC) controller for LCL-filtered GTI is proposed in this paper. Six sensors can be saved by the state observer and zero steady-state error can be easily realized by two modified control methods, where an integral regulator is insert into the conventional PBC controller with two different ways. Simulation platform is built in MATLAB/Simulink and a 3-kW experimental device is carried out with DS1202 to verify the correctness and effectiveness of proposed control method.
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