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Application of feedback linearization control for optimal power tracking with energy in wind power generation system

机译:反馈线性化控制在风力发电系统中能量的最佳功率跟踪应用

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Fluctuation, intermittence and uncertain are the characteristics of wind energy which cause wind energy output power fluctuation and influence the grid stability and power quality, it is hard to be controlled exactly by traditional controllers. The feedback linearization control was applied to wind power generation system (WPGS), which was to reduce the cost of wind energy conversion system and improve its performance. The WPGS model was constructed with mathematical models of aerodynamics subsystem, drive train subsystem and permanent magnetic synchronous generator (PMSG) subsystem. The feedback linearization control rule was proposed, with feedback linearization control theory based on differential geometry, the coordinated transformation and nonlinear state feedback were obtained. The system was constructed with MATLAB/Simulink platform, the model and control strategy was adopted and the simulation result shows this method can realized optimal power control, which has maximum energy capture ability.
机译:波动,间歇性和不确定是风能的特点,导致风能输出功率波动并影响电网稳定性和功率质量,很难通过传统控制器完全控制。反馈线性化控制应用于风力发电系统(WPG),这是降低风能转换系统的成本,提高其性能。 WPGS模型由空气动力学子系统的数学模型,传动系站子系统和永磁同步发电机(PMSG)子系统的数学模型。提出了反馈线性化控制规则,通过基于差分几何形状的反馈线性化控制理论,获得协调变换和非线性状态反馈。该系统由MATLAB / SIMULINK平台构建,采用模型和控制策略,仿真结果表明该方法可以实现最佳功率控制,具有最大的能量捕获能力。

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