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A Comparative Study of Three Fault Diagnosis Schemes for Wind Turbines

机译:三种风力发电机故障诊断方案的比较研究

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摘要

In wind turbine systems, early diagnosis and accommodation of faults are crucial for the reliable and cost effective operation of wind turbines and their success as viable renewable energy conversion solutions. This paper proposes and compares three different diagnostic schemes that address the issue of fault detection and isolation for the drivetrain and generator–converter subsystems of a wind turbine. The first diagnostic scheme is based on a cascade of two Kalman filters intended to alleviate the effect of the nonlinear aerodynamic torque generation in the drivetrain dynamics. The second scheme uses a bank of dedicated observers, each of which exploits Thau’s argument for systems featuring nonlinear static feedback. The third scheme is a secondary filtering mechanism constructed from parity equations by treating the nonlinearity as bounded uncertainty. The performance of each scheme is demonstrated using simulations of the wind turbine system. Robustness of the schemes has been analyzed in terms of parametric uncertainties and different operating conditions. A detailed comparison is also presented pointing to the positive and negative aspects of each scheme.
机译:在风力涡轮机系统中,早期诊断和故障排除对于风力涡轮机的可靠且具有成本效益的运行及其作为可行的可再生能源转换解决方案的成功至关重要。本文提出并比较了三种不同的诊断方案,这些方案解决了风力涡轮机的动力传动系统和发电机-转换器子系统的故障检测和隔离问题。第一个诊断方案基于两个卡尔曼滤波器的级联,旨在减轻非线性空气动力转矩在传动系统动力学中的影响。第二种方案使用了一组专门的观察​​者,每个观察者都采用了Thau的针对具有非线性静态反馈的系统的观点。第三种方案是通过将非线性视为有界不确定性而根据奇偶校验方程构造的二次滤波机制。使用风力涡轮机系统的仿真演示了每种方案的性能。已根据参数不确定性和不同的运行条件对方案的稳健性进行了分析。还提供了详细的比较,指出每种方案的积极和消极方面。

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