首页> 外文期刊>Journal of Computational and Applied Research in Mechanical Engineering (JCARME) >A new strategy for controlling wind turbines against sensor faults and wake effects to harvest more electrical energy
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A new strategy for controlling wind turbines against sensor faults and wake effects to harvest more electrical energy

机译:控制风力涡轮机免受传感器故障和尾流影响以获取更多电能的新策略

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This paper describes a new method for harvesting maximum electrical energy in wind farms. In proposing technique, the stochastic process principles are applied for detecting fault measurements of sensors. On the other hand, the wind farm is modeled by using fuzzy concept. Thereby the turbines are controlled against continuous changes in speed, direction and eddy currents of the blowing wind. To evaluate the performance of the proposed method three practical conditions of wind blowing are simulated. In the first scenario, the normal wind is simulated with low turbulence and slow changes. The second scenario belongs to high turbulence winds with sudden shifts in their parameters, and finally in the most complex scenario, several eddy currents are considered in blowing winds too. The obtained results show that the proposed method provides greater and more uniform harvested power compared to alternative methods. Furthermore, its superiority against other techniques has increased in parallel with the scenario become more complicated.
机译:本文介绍了一种在风电场中获取最大电能的新方法。在提出的技术中,随机过程原理被应用于检测传感器的故障测量。另一方面,通过使用模糊概念对风电场进行建模。因此,控制涡轮机以防止风的速度,方向和涡流的连续变化。为了评估所提方法的性能,模拟了三个实际的风力条件。在第一种情况下,模拟的正常风具有低湍流和缓慢变化。第二种情况属于湍流剧烈且参数突然变化的情况,最后,在最复杂的情​​况下,吹风中也考虑了几种涡流。获得的结果表明,与替代方法相比,所提出的方法提供了更大,更均匀的收获功率。此外,与方案变得更加复杂的同时,它相对于其他技术的优势也增加了。

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