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Oscillator-Based Inverter Control for Islanded Three-Phase Microgrids

机译:孤岛式三相微电网的基于振荡器的逆变器控制

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A control scheme is proposed for an islanded low-inertia three-phase inverter-based microgrid with a high penetration of photovoltaic (PV) generation resources. The output of each inverter is programmed to emulate the dynamics of a nonlinear oscillator. The virtual oscillators within each controller are implicitly coupled through the physical electrical network. The asymptotic synchronization of the oscillators can be guaranteed by design, and as a result, a stable power system emerges innately with no communication between the inverters. Time-domain switching-level simulation results for a 45-kW microgrid with 33% PV penetration demonstrate the merits of the proposed technique; in particular they show that the load voltage can be maintained between prescribed bounds in spite of variations in incident irradiance and step changes in the load.
机译:针对具有低渗透率的光伏发电资源的孤岛式低惯量三相逆变器微电网,提出了一种控制方案。对每个反相器的输出进行编程,以模拟非线性振荡器的动态特性。每个控制器内的虚拟振荡器通过物理网络隐式耦合。通过设计可以保证振荡器的渐近同步,结果,固有的稳定电源系统出现了,逆变器之间没有通信。光伏渗透率为33%的45 kW微电网的时域开关级仿真结果证明了该技术的优点。特别是,它们表明,尽管入射辐照度发生变化,并且负载的阶跃变化,也可以将负载电压保持在规定的界限之间。

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