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Integrated aeroelastic and control analysis of wind turbine blades equipped with microtabs

机译:配备了微型接头的风力涡轮机叶片的综合气动弹性和控制分析

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This paper presents the results of an investigation into the performance of different controllers in active load control of wind turbine blades equipped with microtabs. A bang bang (BB) controller, a linear quadratic regulator (LQR) a proportional integral derivative (PID) and a sliding mode controller (SMC) are synthesised for load alleviation. The performance of the synthesised controllers in load alleviation is evaluated by employing WTAC (Wind Turbine Aeroelastic and Control), a wind turbine simulator incorporating an unsteady aerodynamic module, a structural analysis module and a control module. The variable-speed pitch-controlled NREL-5 MW is adopted as the case study. Using frequency domain analysis it is shown that for the studied case all controllers have more or less the same performance at rejecting the first rotational frequency loads. It is also shown that all controllers are more effective at rejecting loads with lower frequencies. BB and PID controllers, although capable of rejecting low frequency loads, may cause amplification of loads with higher frequencies. Investigating the performance of four controllers at different wind speeds for the studied wind turbine, it is observed that the effectiveness of BB and PID controllers reduces with wind speed but on the other hand SMC and LQR perform better at higher wind speeds. Introducing a new parameter, life index, the performance of different controllers in terms of the actuation wear is investigated. It is shown that LQR cause less actuation wear compared to SMC, while having comparable performance in load alleviation. (C) 2014 Elsevier Ltd. All rights reserved.
机译:本文介绍了对配备微标签的风轮机叶片主动负载控制中不同控制器性能的研究结果。合成了Bang(bang)(BB)控制器,线性二次调节器(LQR),比例积分微分(PID)和滑模控制器(SMC)来减轻负载。通过采用WTAC(风轮机气动弹性和控制),结合了非稳态气动模块,结构分析模块和控制模块的风力涡轮机模拟器来评估合成控制器在减轻负荷方面的性能。以变​​速螺距控制的NREL-5 MW为例。使用频域分析表明,对于所研究的情况,所有控制器在拒绝第一旋转频率负载时或多或少具有相同的性能。还显示出,所有控制器在抑制低频负载方面更为有效。 BB和PID控制器虽然能够拒绝低频负载,但可能会导致高频负载放大。通过对所研究的风力涡轮机研究四个控制器在不同风速下的性能,可以观察到BB和PID控制器的有效性随风速而降低,但另一方面,SMC和LQR在较高风速下表现更好。引入新的参数,寿命指标,研究了不同控制器在执行磨损方面的性能。结果表明,与SMC相比,LQR引起的致动磨损更少,同时在减轻负载方面具有可比的性能。 (C)2014 Elsevier Ltd.保留所有权利。

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