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首页> 外文期刊>Cogeneration & Distributed Generation Journal >Control Strategy to Maximize Power Extraction in Wind Turbine
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Control Strategy to Maximize Power Extraction in Wind Turbine

机译:最大化风力发电机功率提取的控制策略

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This article deals with nonlinear control of variable speed wind turbine (VSWT), where the dynamics of the wind turbine (WT) is obtained from a single mass model. The main objective of this work is to maximize the energy capture form the wind with reduced oscillation on the drive train. The generator torque is considered as the control input to the WT. In general the conventional control techniques such as Aerodynamic Torque Feed-Forward (ATF) and Indirect Speed Control (ISC) are unable to track the dynamic aspect of the WT. To overcome the above drawbacks the nonlinear controllers such Sliding Mode Controller (SMC) and SMC with integral action (ISMC) with the estimation of effective wind speed are proposed. The Modified Newton Raphson (MNR) is used to estimate the effective wind speed from aero dynamic torque and rotor speed. The proposed controller is tested with different wind profiles with the presence of disturbances and model uncertainty. From the results the proposed controller was found to be suitable in maintaining a trade-off between the maximum energy capture and reduced transient on the drive train. Finally both the controllers are validated by using FAST (Fatigue, Aerodynamics, Structures, and Turbulence) WT simulator.
机译:本文涉及变速风力涡轮机(VSWT)的非线性控制,其中风力涡轮机(WT)的动力学是从单个质量模型获得的。这项工作的主要目的是最大程度地减少风对能量的吸收,同时减少传动系上的振动。发电机扭矩被视为WT的控制输入。通常,诸如气动扭矩前馈(ATF)和间接速度控制(ISC)之类的常规控制技术无法跟踪WT的动态方面。为了克服上述缺点,提出了带有有效风速估计的非线性控制器,如滑模控制器(SMC)和带积分作用的SMC(ISMC)。改进的牛顿拉弗森(MNR)用于根据气动扭矩和转子速度估算有效风速。所提出的控制器在存在干扰和模型不确定性的情况下,采用不同的风廓线进行了测试。从结果中发现,所提出的控制器适合在最大能量捕获和传动系上减少的瞬态之间进行权衡。最后,通过使用FAST(疲劳,空气动力学,结构和湍流)WT模拟器对两个控制器进行了验证。

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