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首页> 外文期刊>International Journal of Control >Adaptive back-stepping pitch angle control for wind turbine based on a new electro-hydraulic pitch system
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Adaptive back-stepping pitch angle control for wind turbine based on a new electro-hydraulic pitch system

机译:基于新型电液桨距系统的风力发电机自适应反步桨距角控制

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摘要

A new electro-hydraulic pitch system is proposed to smooth the output power and drive-train torque fluctuations for wind turbine. This new pitch system employs a servo-valve-controlled hydraulic motor to enhance pitch control performances. This pitch system is represented by a state-space model with parametric uncertainties and nonlinearities. An adaptive back-stepping pitch angle controller is synthesised based on this state-space model to accurately achieve the desired pitch angle control regardless of such uncertainties and nonlinearities. This pitch angle controller includes a back-stepping procedure and an adaption law to deal with such uncertainties and nonlinearities and hence to improve the final pitch control performances. The proposed pitch system and the designed pitch angle controller have been validated for achievable and efficient power and torque regulation performances by comparative experimental results under various operating conditions.
机译:提出了一种新的电液变桨系统,以平滑风力涡轮机的输出功率和传动系统扭矩波动。这种新的变桨系统采用伺服阀控制的液压马达来增强变桨控制性能。该变桨系统由具有参数不确定性和非线性的状态空间模型表示。基于这种状态空间模型,可以合成自适应反步俯仰角控制器,以准确实现所需的俯仰角控制,而无需考虑此类不确定性和非线性。该俯仰角控制器包括后推程序和自适应律,以处理此类不确定性和非线性,从而改善最终俯仰控制性能。通过在各种操作条件下的对比实验结果,已验证了所提出的变桨系统和设计的变桨角控制器具有可实现的有效功率和扭矩调节性能。

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