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Power sharing strategy in islanded microgrids using improved droop control

机译:使用改进的下垂控制的孤岛微电网功率共享策略

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摘要

This paper presents a power sharing control method for paralleled three-phase inverters in an islanded microgrid. In this study, the mismatch of power sharing when the line impedances have significant differences for inverters connected to a microgrid has been solved, the accuracy of power sharing in an islanded microgrid is improved, the voltage droop slope is tuned to compensate for the mismatch in the voltage drops across line impedances by using communication links. The method will ensure in accurate power sharing even if the communication is interrupted. If the load changes while the communication is interrupted, the accuracy of power sharing is reduced but the proposed method is better than the conventional droop control method. In addition, the accuracy of power sharing base on the proposed method is not affected by the time delay in the communication channel and local loads at the output of the inverters. The control model has been simulated in Matlab with two or three inverters are connected in parallel. Simulation results demonstrate the accuracy of the proposed control method. Futhermore, an experimental setup was built in the laboratory. Results obtained from the experimental setup verify the effectiveness of the proposed method.
机译:本文提出了一种在孤岛微电网中并联三相逆变器的功率共享控制方法。在这项研究中,解决了当线路阻抗与微电网连接的逆变器的线路阻抗存在显着差异时的功率分配不匹配问题,提高了孤岛微电网中功率分配的准确性,调整了电压下垂斜率以补偿电网中的不匹配问题。通过使用通信链路,电压会在线路阻抗上下降。即使通信中断,该方法也将确保准确的功率共享。如果在通信中断时负载发生变化,则功率共享的精度会降低,但所提出的方法要优于传统的下垂控制方法。另外,基于所提出的方法的功率共享的准确性不受通信信道中的时间延迟和逆变器的输出处的局部负载的影响。该控制模型已在Matlab中进行了仿真,其中两个或三个逆变器并联。仿真结果证明了该控制方法的准确性。此外,在实验室中建立了实验装置。从实验设置获得的结果证明了所提出方法的有效性。

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