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A New Feedback Method for PR Current Control of LCL-Filter-Based Grid-Connected Inverter

机译:基于LCL滤波器的并网逆变器PR电流控制的新反馈方法

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摘要

For a grid-connected converter with an LCL filter, the harmonic compensators of a proportional–resonant (PR) controller are usually limited to several low-order current harmonics due to system instability when the compensated frequency is out of the bandwidth of the system control loop. In this paper, a new current feedback method for PR current control is proposed. The weighted average value of the currents flowing through the two inductors of the LCL filter is used as the feedback to the current PR regulator. Consequently, the control system with the LCL filter is degraded from a third-order function to a first-order one. A large proportional control-loop gain can be chosen to obtain a wide control-loop bandwidth, and the system can be optimized easily for minimum current harmonic distortions, as well as system stability. The inverter system with the proposed controller is investigated and compared with those using traditional control methods. Experimental results on a 5-kW fuel-cell inverter are provided, and the new current control strategy has been verified.
机译:对于带有LCL滤波器的并网转换器,由于补偿频率超出系统控制的带宽,由于系统不稳定,比例谐振(PR)控制器的谐波补偿器通常限于多个低阶电流谐波环。本文提出了一种新的用于PR电流控制的电流反馈方法。流经LCL滤波器的两个电感器的电流的加权平均值用作对电流PR调节器的反馈。因此,带有LCL滤波器的控制系统从三阶功能降为一阶功能。可以选择较大的比例控制环增益以获得较宽的控制环带宽,并且可以轻松地对系统进行优化,以将电流谐波失真和系统稳定性降至最低。对带有建议控制器的逆变器系统进行了研究,并与使用传统控制方法的逆变器系统进行了比较。提供了5kW燃料电池逆变器的实验结果,并验证了新的电流控制策略。

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