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A study of maximum power point tracking algorithms for wind energy system

机译:风能系统最大功率点跟踪算法研究

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This paper reviews and studies the state-of the-art of available maximum power point tracking (MPPT) algorithms. Due to the nature of the wind that is instantaneously changing, hence, there is only one optimal generator speed is desirable at one time that ensures the maximum energy is harvested from the available wind. Therefore, it is essential to include a controller that is able to track the maximum peak regardless of any wind speed. The available maximum power point tracking (MPPT) algorithms can be classified according to the control variable, namely with and without sensor, and also the technique used to locate the maximum peak. A comparison has been made on the performance of the selected MPPT algorithms on the basis of various speed responses and the ability to achieve the maximum energy yield. The tracking performance is performed by simulating wind energy system using MATLAB/Simulink simulation package. Besides that, a brief and critical discussion is made on the differences of available MPPT algorithms for wind energy system. Finally, a conclusion is drawn.
机译:本文回顾并研究了可用的最大功率点跟踪(MPPT)算法的最新技术。由于瞬时改变的风的性质,因此,一次仅需要一种最佳发电机速度,以确保从可用风中获取最大能量。因此,必不可少的是包括一个能够跟踪最大峰值而与任何风速无关的控制器。可以根据控制变量对可用的最大功率点跟踪(MPPT)算法进行分类,即带或不带传感器,以及用于定位最大峰值的技术。根据各种速度响应和实现最大能量产量的能力,对所选MPPT算法的性能进行了比较。通过使用MATLAB / Simulink仿真包对风能系统进行仿真来执行跟踪性能。除此之外,针对可用的风能系统MPPT算法的差异进行了简短而严格的讨论。最后得出结论。

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