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Adaptive Fault-Tolerant Control Design Approach for a Wind Turbine Benchmark

机译:风力涡轮机基准的自适应容错控制设计方法

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This paper addresses the development of an active fault tolerant control scheme that is applied to a wind turbine simulated benchmark. The proposed methodology is based on a comprehensive scheme relying on adaptive controllers designed by means of the on-line identification of the system model under diagnosis. In this way, the controller reconfiguration mechanism exploits an adaptive regulator implementation, depending on the on-line estimate of system model. One of the advantages of this strategy is that, for example, the original structure of logic-based switching digital controller scheme already implemented for the wind turbine benchmark can be almost preserved. The active fault tolerant control scheme is therefore applied to a wind turbine simulated benchmark, in the presence of disturbance and measurement errors, along nominal operating conditions, including also different realistic fault situations. The achieved results in both fault-free and faulty conditions serve to show the enhancement of the control performances, and the fault accommodation features.
机译:本文解决了应用于风力涡轮机模拟基准的主动容错控制方案的开发。该方法基于依赖于通过诊断下系统模型的在线识别设计的自适应控制器的全面方案。通过这种方式,根据系统模型的在线估计,控制器重新配置机制利用自适应调节器实现。例如,该策略的一个优点是,例如,可以几乎保留已经为风力涡轮机基准测试已经实现的基于逻辑的交换数字控制器方案的原始结构。因此,沿着标称操作条件,包括扰动和测量误差存在的风力涡轮机模拟基准,包括不同的现实故障情况,将主动容错控制方案应用于风力涡轮机模拟基准。在无故障和故障条件下实现的结果有助于提高控制性能,以及故障住宿功能。

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