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Control for the Provision of Virtual Inertia by Wind Turbines with PMSG considering Wind Fluctuations

机译:考虑风力波动的PMSG控制风力涡轮机提供虚拟惯量

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Wind turbines are able to contribute to the frequency stabilization of the electric grid by providing inertial power. As long as the grid frequency corresponds to the nominal value, a wind turbine in partial load range can be operated at the maximum power point (MPP) for maximizing the energy yield. In response to a frequency drop, an inertial control increases the power output for supporting the grid with a reduction of speed as a result. Once the frequency is stabilized, a return in the MPP by accelerating the drive train should happen. For this, the power output of the MPP tracking needs to be speed-dependent, which leads to power fluctuations when wind fluctuations are taken into account. A novel control structure is introduced that uses a special form of MPP tracking, targeting a smooth power output and a guarantee of operational stability. Its behavior is analyzed on the basis of simulation results.
机译:风力涡轮机能够通过提供惯性功率来为电网的频率稳定化做出贡献。只要电网频率对应于标称值,就可以在最大功率点(MPP)上运行部分负载范围内的风力涡轮机,以最大程度地提高能量产量。响应于频率下降,惯性控制增加了用于支撑电网的功率输出,结果是速度降低了。频率稳定后,应通过加速传动系统使MPP返回。为此,MPP跟踪的功率输出需要依赖于速度,这在考虑到风的波动时会导致功率波动。引入了一种新颖的控制结构,该结构使用一种特殊形式的MPP跟踪,旨在实现平稳的功率输出并确保运行稳定性。根据仿真结果分析其行为。

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