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Algorithm for Virtual Synchronous Machine Phase Resynchronization

机译:虚拟同步机相位再同步算法

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In this paper, the idea of operating parallel inverters to mimic the dynamic stability of a synchronous generator (SG) is investigated when the inertia and damping constants are differed. These inverters are virtual synchronous machines (VSM) due to the replication of the inertial dynamics inherent to the SGs. Instead of using a conventional Phase-Lock Loop (PLL) in order to synchronize distributed generation (DG) to the grid frequency, the swing equation inherent to SG dynamics implemented. Parallel VSM controlled inverters can have behaviors based on the constants of their individual swing equation. This can cause the phase angles to differ beyond IEEE synchronization limits. The proposed algorithm is implemented to correct the phase angle and return parallel VSMs to acceptable operating ranges. Simulation results are performed in PSCAD-EMTDC simulation environment.
机译:在本文中,研究了当惯性和阻尼常数不同时,运行并联逆变器以模拟同步发电机(SG)的动态稳定性的想法。由于复制了SG固有的惯性动力学,这些逆变器是虚拟同步机(VSM)。代替使用常规的锁相环(PLL)来将分布式发电(DG)同步到电网频率,而是实现了SG动态固有的摆动方程。并联VSM控制的逆变器可以根据其各自的摆幅方程式的常数来决定其行为。这可能导致相角超出IEEE同步限制。实施所提出的算法以校正相角并使并联的VSM返回到可接受的工作范围。仿真结果在PSCAD-EMTDC仿真环境中执行。

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