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Sensorless variable speed operation of doubly-fed reluctance wind generators

机译:双馈磁阻风发电机的无传感器变速操作

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摘要

An improved and more robust flux vector orientated control scheme for an emerging doubly-fed reluctance generator without a shaft angular position or velocity sensor has been proposed, computer-simulated, and experimentally verified. Whilst retaining the cost and other advantages of using a fractional power electronics converter rating, this promising medium-speed brushless machine technology has been viewed by research and industrial communities as an appealing economical solution for the compromised reliability and high maintenance requirements associated with the presence of slip rings, brushes, and the failures prone three-stage gearbox of conventional wound rotor doubly-fed induction generators, traditionally deployed for commercial wind turbines. The comprehensive comparative simulation and test results obtained have been shown to agree very well undoubtedly demonstrating the good overall performance of the sensorless controller. A precise speed reference tracking with smooth, intrinsically decoupled real and reactive power responses of the grid-connected winding has been achieved for the typical variable loading profiles and narrow speed ranges (e.g. around $2:1$2:1 or so) of a laboratory emulated wind turbine.
机译:已经提出了一种改进的和更强大的磁通向量取向控制方案,用于没有轴角位置或速度传感器的出现的逐渐发出的双馈磁阻发生器,计算机模拟和实验验证。虽然保留了使用分数动力电子转换器等级的成本和其他优点,但是,这座有前途的中速无刷机技术已被研究和工业社区视为一种​​有吸引力的经济解决方案,可达到损害的可靠性和高维护要求滑圈,刷子和故障易于传统伤口转子的三级变速箱双馈诱导发电机,传统上部署用于商业风力涡轮机。已获综合的比较模拟和测试结果表明毫无疑问地表明无传感器控制器的良好整体性能。对于典型的可变装载曲线和窄速度范围(例如,尺寸约为2:1 $ 2:1左右),已经实现了具有光滑的速度和无功功率响应的精确速度参考跟踪。风力涡轮机。

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