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A Novel Algorithm for Fast and Efficient Speed-Sensorless Maximum Power Point Tracking in Wind Energy Conversion Systems

机译:风能转换系统中快速有效的无速度传感器最大功率点跟踪的新算法

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摘要

This paper proposes a novel solution to the problems that exist in the conventional hill climb searching (HCS) maximum power point tracking (MPPT) algorithm for the wind energy conversion system. The presented solution not only solves the tracking speed versus control efficiency tradeoff problem of HCS but also makes sure that the changing wind conditions do not lead HCS in the wrong direction. It intelligently adapts the variable step size to keep up with the rapid changes in the wind and seizes the perturbation at the maxima to yield 100% control efficiency. For this purpose, a novel peak detection capability has been devised which, in contrast with conventional peak detection, can work robustly under changing wind conditions. The proposed MPPT performs self-tuning to cope with the nonconstant efficiencies of the generator–converter subsystems—a phenomenon quite rarely discussed in research papers so far. In addition, a smart speed-sensorless scheme has been developed to avoid the use of mechanical sensors. The experimental results confirm that the proposed algorithm is remarkably faster and more efficient than the conventional HCS.
机译:针对风能转换系统的常规爬山搜索(HCS)最大功率点跟踪(MPPT)算法中存在的问题,本文提出了一种新颖的解决方案。提出的解决方案不仅解决了HCS的跟踪速度与控制效率之间的权衡问题,而且确保了不断变化的风况不会导致HCS方向错误。它智能地适应可变步长,以适应风的快速变化,并抓住最大的扰动,以产生100%的控制效率。为此目的,已经设计出一种新颖的峰值检测能力,与常规的峰值检测相比,它可以在变化的风况下稳定地工作。拟议的MPPT可以进行自我调整,以应对发电机-转换器子系统的非恒定效率-这种现象迄今为止在研究论文中很少讨论。另外,已经开发了一种智能的无速度传感器方案,以避免使用机械传​​感器。实验结果证明,与传统的HCS相比,该算法具有更快,更高效的性能。

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