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Speed-based diagnostics of aerodynamic and mass imbalance in large wind turbines

机译:大型风力涡轮机中基于速度的空气动力学和质量失衡诊断

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摘要

Any kind of imbalance in the operation of a wind turbine has adverse effect on the downstream torsional components as well as tower structure. It is crucial to detect imbalance at its very inception. The identification of the type of imbalance is also required so that appropriate measures of fault accommodation can be performed in the control system. In particular, it is important to distinguish between mass and aerodynamic imbalance. While the former is gradually caused by a structural anomaly (e.g. ice deposition, moisture accumulation inside blade), the latter is generally associated to a fault in the pitch control system. This paper proposes a technique for the detection and identification of imbalance fault in large scale wind turbines. Unlike most other existing method it requires only the rotor speed signal which is readily available in existing turbines. Signature frequencies have been proposed in this work to identify imbalance type based on their physical phenomenology. The performance of this technique has been evaluated by simulations using an existing benchmark model. The effectiveness of the proposed method has been confirmed by the simulation results.
机译:风力涡轮机运行中的任何类型的不平衡都会对下游的扭转组件以及塔架结构产生不利影响。从一开始就发现不平衡至关重要。还需要识别不平衡类型,以便可以在控制系统中执行适当的故障排除措施。尤其重要的是要区分质量和空气动力失衡。尽管前者是由结构异常(例如,冰沉积,叶片内部的水分积累)逐渐引起的,但后者通常与变桨控制系统中的故障有关。提出了一种大型风力发电机不平衡故障的检测与识别技术。与大多数其他现有方法不同,它仅需要转子速度信号,该信号可在现有涡轮机中轻松获得。在这项工作中已经提出了签名频率,以根据其物理现象识别不平衡类型。该技术的性能已通过使用现有基准模型的仿真进行了评估。仿真结果证实了该方法的有效性。

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