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Stable coordination of multiple PMSGs in an islanded DC microgrid: A distributed model predictive control approach

机译:岛状直流微电网中多个PMSG的稳定协调:一种分布式模型预测控制方法

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For permanent magnet synchronous generators (PMSGs)-based dc microgrids operating in islanded mode, coordinated load sharing among multiple PMSGs is necessary when the available wind power exceeds the load demand. During the load sharing process, PMSG may prone to instability due to possible over deceleration. In order to address this issue, this paper presents a new distributed control scheme, which achieves stable load sharing among multiple PMSGs in a dc microgrid. Based on the distributed model predictive control (DMPC) approach, the proposed scheme coordinates the operation of parallel connected grid-side converters, thus optimizing the load sharing ratio for each PMSG. The salient feature of this scheme is that, by incorporating the rotor kinetic energy and generation margin into the controller design, it ensures stable operation of all PMSGs. Simulation results verify the effectiveness of the proposed scheme.
机译:对于以孤岛模式运行的基于永磁同步发电机(PMSG)的直流微电网,当可用风力超过负荷需求时,多个PMSG之间需要协调的负荷分担。在负载分配过程中,PMSG可能会由于过度减速而趋于不稳定。为了解决这个问题,本文提出了一种新的分布式控制方案,该方案实现了直流微电网中多个PMSG之间的稳定负载共享。该方案基于分布式模型预测控制(DMPC)方法,协调了并联电网侧转换器的运行,从而优化了每个PMSG的负载分配率。该方案的显着特征是,通过将转子动能和发电余量纳入控制器设计中,可以确保所有PMSG的稳定运行。仿真结果验证了该方案的有效性。

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