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Adaptive Backstepping Control Based on Floating Offshore High Temperature Superconductor Generator for Wind Turbines

机译:基于浮式海上高温超导发电机的风力发电机自适应反推控制

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With the rapid development of offshore wind power, the doubly fed induction generator and permanent magnet synchronous generator cannot meet the increasing request of power capacity. Therefore, superconducting generator should be used instead of the traditional motor, which can improve generator efficiency, reduce the weight of wind turbines, and increase system reliability. This paper mainly focuses on nonlinear control in the offshore wind power system which is consisted of a wind turbine and a high temperature superconductor generator. The proposed control approach is based on the adaptive backstepping method. Its main purpose is to regulate the rotor speed and generator voltage, therefore, achieving the maximum power point tracking (MPPT), improving the efficiency of a wind turbine, and then enhancing the system’s stability and robustness under large disturbances. The control approach can ensure high precision of generator speed tracking, which is confirmed in both the theoretical analysis and numerical simulation.
机译:随着海上风电的迅猛发展,双馈感应发电机和永磁同步发电机已不能满足日益增长的发电能力要求。因此,应该使用超导发电机代替传统的电动机,这可以提高发电机效率,减轻风力涡轮机的重量,并提高系统可靠性。本文主要研究由风力发电机和高温超导发电机组成的海上风力发电系统的非线性控制。所提出的控制方法基于自适应反推方法。其主要目的是调节转子速度和发电机电压,从而实现最大功率点跟踪(MPPT),提高风力涡轮机的效率,然后增强系统在大扰动下的稳定性和鲁棒性。该控制方法可以确保发电机转速跟踪的高精度,这在理论分析和数值模拟中都得到了证实。

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