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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >Platform Stabilization of Floating Offshore Wind Turbines by Artificial Muscle Based Active Mooring Line Force Control
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Platform Stabilization of Floating Offshore Wind Turbines by Artificial Muscle Based Active Mooring Line Force Control

机译:浮动近海风力涡轮机的平台稳定基于人工肌肉积极系泊线力控制

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摘要

The floating offshore wind turbine (FOWT) presents underactuation challenge for controls in terms of platform stability, power regulation, and increased structural loads, which demands for simple, low-cost, low-power, and high-bandwidth actuation concepts. In this article, an active mooring line force control (AMLFC) strategy is proposed based on a novel thermally actuated fishing line artificial muscle (FLAM) actuator. The proposed FLAM actuator consists of multiple bundles of twisted nylon fishing lines, which is added to the junction between the mooring lines and platform bars of FOWT with tensioned-leg platform (TLP). A simulation model of the FLAM actuator is developed in Simulink, along with an interface to the mooring line model of TLP-FOWT in NREL's FAST. The dynamic model of the FLAM actuator is obtained with ANSYS simulation, and a control-oriented model is obtained for the FOWT platform motion. A linear quadratic regulator is implemented for the FLAM-based AMLFC. Simulations are performed on the 5-MW WindPACT model for one Region-2 and one Region-3 scenarios. Simulation results show that, with mild power consumption, the proposed strategy can significantly reduce the platform roll motion and the tower-base side–side bending loads without little impact on the rotor speed and power output.
机译:浮动海上风力涡轮机(家禽)在平台稳定性,功率调节和增加的结构负载方面对控制提供了无力挑战,这需要简单,低成本,低功耗和高带宽致动概念。在本文中,基于新型热致动的钓鱼线人造肌肉(FLAM)致动器提出了主动系泊线力控制(AMLFC)策略。所提出的火焰致动器由多个绞合尼龙钓鱼线组成,该线被添加到带有张紧腿平台(TLP)的系泊线和家禽平台杆之间的连接。在Simulink中开发了FLAM执行器的模拟模型,以及NREL快速的TLP-HOWT系泊线模型的界面。用ANSYS模拟获得FLAM致动器的动态模型,并为FOWT平台运动获得了一种面向控制的模型。为基于FLAM的AMLFC实施了线性二次调节器。对一个区域-2和一个区域-3场景的5 MW WindPact模型进行仿真。仿真结果表明,随着温和的功耗,所提出的策略可以显着减少平台滚动运动和塔基侧侧弯曲载荷,而不会对转子速度和功率输出产生影响。

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