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Maximum power point tracking method using a modified perturb and observe algorithm for grid connected wind energy conversion systems

机译:改进的扰动和观测算法并网风能转换系统的最大功率点跟踪方法

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This paper analyses the performance of maximum power point tracking in a grid connected permanent magnet synchronous generator-based wind energy conversion system using a linear relationship between optimum speed and wind velocity to increase the speed of the controller response. Furthermore, the proposed large step forward and the small step reverse initial tracking improves the accuracy of the existing large step perturb and observe algorithm and is also capable of tracking maximum power for rapidly varying wind conditions. The system consists of back-to-back sinusoidal pulse-width modulation converters. The generator side converter is used to track the maximum wind power using the proposed method through field oriented control. The role of the grid side inverter is to transfer the generated wind power from DC-link to the grid and regulate the DC-link voltage. Moreover, this paper examines the performance of the grid side inverter in grid synchronisation with a non-linear inductive load. Moreover, it analyses the concept of the proposed method using the theoretical aspects. A model for the complete system is developed in MATLAB/SIMULINK and the performance of the proposed control scheme is validated through simulations.
机译:本文利用最佳速度与风速之间的线性关系来分析并网永磁同步发电机风力发电系统中最大功率点跟踪的性能,以提高控制器的响应速度。此外,提出的大步向前和小步反向初始跟踪提高了现有大步扰动和观测算法的精度,并且还能够跟踪风速迅速变化的最大功率。该系统由背对背正弦脉冲宽度调制转换器组成。发电机侧变流器用于通过磁场定向控制使用所提出的方法跟踪最大风力。电网侧逆变器的作用是将产生的风力从直流母线传递到电网,并调节直流母线电压。此外,本文研究了电网侧逆变器在非线性感应负载下电网同步中的性能。此外,它从理论上分析了提出的方法的概念。在MATLAB / SIMULINK中开发了完整系统的模型,并通过仿真验证了所提出控制方案的性能。

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