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Energy yield of passive stall regulated fixed speed wind turbine with optimal rotor speed

机译:具有最佳转子速度的被动失速调节定速风力发电机的能量产生

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摘要

This paper presents a lucid mathematical deduction of optimal rotor speed to maximize the energy yield of wind machines with passively stall regulated Fixed Speed Scheme (FSS). The power captured at a particular wind speed is dictated by the turbine characteristics in conjunction with the type of drive (variable speed or fixed speed). However, the energy yield estimation requires knowledge of wind speed frequency distribution. Studies have revealed that the probability density function could be fairly represented by Weibull distribution with wind velocity being suitably scaled. Considering these facts, the concept of Maxima Energy Indicator (MEI) for FSS has been developed from first principles to obtain optimal rotor speed (w_(opt)) numerically. Alternatively, MEI is further simplified using Incomplete Gamma Function which forms the mathematical solution for w_(opt). It turns out that w_(opt) of FSS varies with location owing to changes in Weibull parameters. Therefore, it is deceptive to compare the energy yields of FSS with its counterpart Variable Speed Scheme (VSS) without taking into consideration the optimum rotor speed of FSS. With this motivation, computations have been performed which compare the annual yields of both the alternatives, the rotor speed of the low cost stall regulated FSS being optimized.
机译:本文提出了一种最佳转子速度的清晰数学推导,以利用被动失速调节的固定速度方案(FSS)最大化风力发电机的能量产量。在特定风速下捕获的功率取决于涡轮机的特性以及驱动器的类型(变速或固定速度)。然而,能量产量估计需要了解风速频率分布。研究表明,概率密度函数可以用威布尔分布合理地表示,并适当缩放风速。考虑到这些事实,FSS的Maxima能量指示器(MEI)的概念是从最初的原理发展而来的,以数值方式获得最佳转子速度(w_(opt))。或者,使用不完整伽玛函数进一步简化MEI,该函数形成w_(opt)的数学解。事实证明,由于威布尔参数的变化,FSS的w_(opt)随位置而变化。因此,在不考虑FSS的最佳转子速度的情况下,将FSS的能量输出与其对应的变速方案(VSS)进行比较是具有欺骗性的。有了这种动力,已经进行了计算,比较了两个替代方案的年收益,优化了低成本失速调节FSS的转子速度。

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