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A Voltage-sensorless Current Control of Grid-connected Inverter Using Frequency-adaptive Observer

机译:基于频率自适应观测器的并网逆变器无电压传感器电流控制

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This paper presents a grid voltage-sensorless current control design based on the linear quadratic regulator (LQR) approach for an LCL-filtered grid-connected inverter. The proposed scheme relies only on the information from the grid-side current sensors to implement the control algorithm as well as to synchronize the inverter system with the utility grid. Basically, the construction of current controller consists of a full-state feedback regulator augmented with an integral control term for achieving control objectives, and a frequency-adaptive observer to estimate the system state variables and grid voltage parameters even under a non-ideal grid environment with frequency variation. A systematic design method based on the LQR approach is introduced to obtain optimal gains for the controller as well as the adaptive observer. The effectiveness of the proposed scheme is validated through the simulation results.
机译:本文提出了一种基于线性二次调节器(LQR)方法的LCL滤波并网逆变器电网无电压传感器电流控制设计。所提出的方案仅依赖于来自电网侧电流传感器的信息来实现控制算法以及使逆变器系统与公用电网同步。基本上,电流控制器的结构包括一个全状态反馈调节器和一个用于实现控制目标的积分控制项,以及一个自适应频率的观测器,即使在非理想的电网环境下也可以估算系统状态变量和电网电压参数随频率变化。引入了一种基于LQR方法的系统设计方法,以获得控制器以及自适应观测器的最佳增益。仿真结果验证了所提方案的有效性。

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