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Power Control of a Nonpitchable PMSG-Based Marine Current Turbine at Overrated Current Speed With Flux-Weakening Strategy

机译:带有磁通减弱策略的基于PMSG的不可变桨式船用水轮机功率过高时的功率控制

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摘要

This paper deals with power control strategies for a fixed-pitch direct drive marine current turbine (MCT) when the marine current velocity exceeds the rated value corresponding to the MCT nominal power. At over-rated marine current speed, the MCT control strategy is supposed to be changed from maximum power point tracking (MPPT) stage to constant power stage. In this paper, flux-weakening strategy is investigated to realize appropriate power control strategies at high marine current speeds. During flux-weakening operations, the generator can be controlled to produce nominal or over-nominal power for a specific speed range (constant power range). These two power control modes are compared and the constant power range is calculated in this paper. The relationship between the expected constant power range and generator parameters requirement (stator inductance, permanent magnet flux, nominal power coefficient) is analyzed in this paper. A Torque-based control with a robust feedback flux-weakening strategy is then carried out in the simulation. The proposed control strategies are tested in both high tidal speed and swell wave cases; the results validate the analysis and show the feasibility of the proposed control method.
机译:本文研究了一种固定螺距直驱式船用电流涡轮机(MCT)的功率控制策略,该方法是在船用电流速度超过与MCT标称功率相对应的额定值时进行的。在海流速度过高的情况下,应该将MCT控制策略从最大功率点跟踪(MPPT)阶段更改为恒定功率阶段。本文研究了弱磁通策略,以在高海流速度下实现适当的功率控制策略。在弱磁通操作期间,可以控制发电机以产生特定速度范围(恒定功率范围)的标称功率或标称功率。比较这两种功率控制模式,并计算出恒定功率范围。本文分析了预期的恒定功率范围与发电机参数要求(定子电感,永磁通量,标称功率系数)之间的关系。然后在仿真中执行具有鲁棒反馈磁通减弱策略的基于转矩的控制。所提出的控制策略在高潮速和涌浪情况下均经过测试;结果验证了分析结果,并表明了该控制方法的可行性。

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