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Voltage Stability and Control of Offshore Wind Farms With AC Collection and HVDC Transmission

机译:交流收集和直流输电的海上风电场的电压稳定性和控制

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This paper investigates the stability and control of offshore wind farms employing medium-voltage ac collection and high-voltage dc (HVDC) transmission to the onshore power grids. Type-IV (full power conversion) turbines and HVDC rectifier based on voltage-source converters are assumed. Output impedance models of the wind turbines and input impedance models of the HVDC rectifier in the positive- and negative-sequence are developed using the harmonic linearization method. An impedance-based stability criterion is then applied to determine the stability of the offshore ac collection bus. Possible instability of the ac bus voltage and resonance between the wind farm and the HVDC rectifier are examined through analysis of the system impedance model. The analytical impedance models are used to identify the root causes of such instability and resonance problems, and to develop possible solutions. Detailed circuit simulation is used to validate the analysis. Individual converter impedance models are also validated by experimental measurements of scaled-down prototypes.
机译:本文研究了采用中压交流电收集和高压直流(HVDC)传输至陆上电网的海上风电场的稳定性和控制能力。假定使用基于电压源转换器的IV型(全功率转换)涡轮机和HVDC整流器。利用谐波线性化方法,分别建立了正序和负序的风力发电机组输出阻抗模型和高压直流输电整流器的输入阻抗模型。然后应用基于阻抗的稳定性标准来确定海上交流采集总线的稳定性。通过分析系统阻抗模型,检查了交流总线电压的可能不稳定性以及风电场与HVDC整流器之间的谐振。解析阻抗模型用于识别此类不稳定和共振问题的根本原因,并开发可能的解决方案。详细的电路仿真用于验证分析。各个转换器的阻抗模型也可以通过按比例缩小的原型的实验测量来验证。

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