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VSG-based PMSG Multi-machine Parallel with DC Droop Control Strategy

机译:基于VSG的PMSG多机与DC下垂控制策略并联

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This paper presents a control strategy for multi-machine parallel permanent magnet synchronous generator (PMSG) grid-connected system, which combines the advantages of virtual synchronous generators (VSG) and direct current transmission to achieve large-scale wind power integration. The grid-connected inverter adopts the VSG control strategy to simulate the port characteristics of the traditional synchronous generator, which can actively provide the inertia support for the system when the power system fluctuates. Based on the power-DC voltage drooping characteristics, a machine-side DC droop control strategy is constructed. This control strategy can significantly reduce the number of inverters and realize the collection and transmission of DC-type power, thereby saving economic costs and reducing the cost. Many problems caused by the internal AC collection process of wind farms. Finally, the performance and effectiveness of the proposed method are validated by the simulation results.
机译:本文介绍了多机平行永磁同步发电机(PMSG)网格连接系统的控制策略,它结合了虚拟同步发电机(VSG)和直流传输的优点,实现了大规模的风力电力集成。网格连接的逆变器采用VSG控制策略来模拟传统同步发电机的端口特性,当电力系统波动时,可以主动为系统提供惯性支持。基于Power-DC电压下垂特性,构建了机器侧DC下垂控制策略。该控制策略可以显着减少逆变器的数量,实现DC型功率的收集和传输,从而节省了经济成本并降低了成本。风电场内部交流收集过程造成的许多问题。最后,通过模拟结果验证了所提出的方法的性能和有效性。

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