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Instability of Wind Turbine Converters During Current Injection to Low Voltage Grid Faults and PLL Frequency Based Stability Solution

机译:风力发电机转换器在注入低压电网故障时的不稳定性和基于PLL频率的稳定性解决方案

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摘要

In recent grid codes for wind power integration, wind turbines are required to stay connected during grid faults even when the grid voltage drops down to zero; and also to inject reactive current in proportion to the voltage drop. However, a physical fact, instability of grid-connected converters during current injection to very low (close to zero) voltage faults, has been omitted, i.e., failed to be noticed in the previous wind power studies and grid code revisions. In this paper, the instability of grid side converters of wind turbines defined as loss of synchronism (LOS), where the wind turbines lose synchronism with the grid fundamental frequency (e.g., 50 Hz) during very deep voltage sags, is explored with its theory, analyzed and a novel stability solution based on PLL frequency is proposed; and both are verified with power system simulations and by experiments on a grid-connected converter setup.
机译:在最新的风电集成电网法规中,即使电网电压下降到零,风力发电机也必须在电网故障期间保持连接状态。并注入与电压降成比例的无功电流。但是,已经忽略了物理事实,即在电流注入期间发生极低(接近零)电压故障时并网转换器的不稳定性,即在以前的风能研究和电网法规修订中并未注意到。在本文中,用其理论探讨了风力涡轮机的电网侧变流器的不稳定性,即不同步(LOS),即在非常深的电压骤降过程中,风力涡轮机与电网基本频率(例如50 Hz)失去同步性。 ,进行了分析,提出了一种基于PLL频率的新型稳定性解决方案;两者均通过电力系统仿真和并网转换器设置的实验进行了验证。

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