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Sliding Mode Observers-based Fault Detection and Isolation for Wind Turbine-driven Induction Generator

机译:基于滑模观测器的风力发电机驱动故障检测与隔离

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Inter-turn short-circuit (ITSC) faults on the induction machine has received much attention in the recent years. Early detection of such faults in wind turbine systems would allow to avoid fluctuation on wind power output and maintain the reliability level. In this paper, Sliding Mode Observers (SMO)-based fault detection and isolation method is developed for induction generator (IG)-based variable-speed grid-connected wind turbines. Firstly, the dynamic model of the wind turbine and IG was given and then, the control was made based on Maximum Power Point Tracking (MPPT) method. The IG closed-loop via Indirect Rotor Flux Oriented Control (IRFOC) scheme was also described. Hence, the performance of the wind turbine system and the stability of injected power to the grid were analyzed under the ITSC fault conditions. The control schemes were proved to be inherently unstable under the faulty conditions. Then, robust SMO were investigated to design an ITSC fault detection and isolation scheme. Finally, simulation results of ITSC detection and isolation in the variable-speed grid-connected wind turbine with affected IG confirm the theoretical development.
机译:近年来,感应电机的匝间短路(ITSC)故障已引起广泛关注。尽早发现风力涡轮机系统中的此类故障将可以避免风力发电的波动并保持可靠性水平。本文针对基于感应发电机(IG)的变速并网风力发电机,开发了基于滑模观测器(SMO)的故障检测和隔离方法。首先给出了风力发电机和中空发电机的动力学模型,然后基于最大功率点跟踪(MPPT)方法进行了控制。还描述了通过间接转子磁通定向控制(IRFOC)方案进行的IG闭环。因此,在ITSC故障情况下分析了风力涡轮机系统的性能和向电网注入的电力的稳定性。事实证明,该控制方案在故障条件下固有地不稳定。然后,研究了鲁棒的SMO,以设计ITSC故障检测和隔离方案。最后,在IG受影响的变速风电并网风机中ITSC检测和隔离的仿真结果证实了理论发展。

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