Power limitation control for a PMSG-based marine current turbine at high tidal speed and strong sea state

Zhibin Zhou, F. Scuiller, J. Charpentier, M. Benbouzid, Tianhao Tang
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引用次数: 39

Abstract

This paper deals with the control strategies for a fixed-pitch marine current turbine (MCT) when the marine current speed exceeds the rated value corresponding to the rated power of generator and converter. Over-rated marine currents occur at large spring tides or under strong sea states; in these cases maximum power point tracking (MPPT) strategies must be changed to power limitation strategies for limiting the generator power at rated value. In this paper, two power limitation strategies with flux-weakening control are investigated. A feedback flux-weakening control is applied to extend the rotor speed operating range over the nominal MPPT tracking speed during high speed marine currents. In the speed control strategy, the turbine power characteristics are used to generate the rotor speed reference and the power limitation can be obtained at steady-state. In the torque control strategy, the generator torque is directly calculated by the power limitation and the rotor speed; this method enables to control the generator power at the limited value at dynamic process. Both strategies are investigated and compared at high tidal speeds without and with swell effect.
高潮速强海况下基于pmsg的海流轮机功率限制控制
本文研究了定螺距海流涡轮(MCT)在海流转速超过额定值时与发电机和变流器额定功率相对应的控制策略。高估的海流发生在大潮或海况较强时;在这种情况下,必须将最大功率点跟踪(MPPT)策略改为功率限制策略,将发电机功率限制在额定值。本文研究了两种带有弱磁控制的功率限制策略。在高速海流条件下,采用反馈磁链弱化控制将转子转速运行范围扩展到标称MPPT跟踪速度之上。在转速控制策略中,利用涡轮功率特性生成转子转速参考,并在稳态下获得功率限制。在转矩控制策略中,通过功率限制和转子转速直接计算发电机转矩;该方法能够在动态过程中将发电机功率控制在限定值。对这两种策略进行了研究,并在无膨胀效应和有膨胀效应的高潮汐速度下进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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