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Maximum power point tracking for the permanent magnet synchronous generator-based WECS by using the discrete-time integral sliding mode controller with a chattering-free reaching law

机译:基于具有无颤动到达律的离散时间积分滑模控制器,用于基于永磁同步发电机的WECS的最大功率点跟踪

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摘要

In this study, a single sensor-based maximum power point tracking (MPPT) algorithm is presented for permanent magnet synchronous generator-based wind energy conversion system (WECS). The MPPT method used in this study uses only the wind speed sensor to generate the reference point required for the maximum power. A discrete-time controller is proposed to bring the system to the reference point determined by the MPPT algorithm. The designed MPPT controller consisting of a new discrete-time reaching-law approach and a discrete-time integral sliding mode control (SMC). The designed discrete-time SMC-based controller is implemented by using an Acorn RISC Machine (ARM)-based LM4F120 microcontroller, and its performance is examined on a WECS emulator prepared in the laboratory. The results got from the real-time studies prove that the proposed controller has the satisfactory performance to bring the system to the MPP. The performance of the proposed controller is also compared with the conventional sliding mode controller and perturb and observe method. The obtained results proved that the proposed controller has a better performance than the other controllers in terms of the settling time and output voltage's ripple.
机译:在这项研究中,针对基于永磁同步发电机的风能转换系统(WECS),提出了一种基于传感器的最大功率点跟踪(MPPT)算法。本研究中使用的MPPT方法仅使用风速传感器来生成最大功率所需的参考点。提出了一种离散时间控制器,以使系统到达由MPPT算法确定的参考点。设计的MPPT控制器由新的离散时间到达律方法和离散时间积分滑模控制(SMC)组成。通过使用基于Acorn RISC Machine(ARM)的LM4F120微控制器来实现设计的基于SMC的离散时间控制器,并在实验室准备的WECS仿真器上检查其性能。实时研究结果表明,所提出的控制器具有令人满意的性能,可将系统引入MPP。所提出的控制器的性能也与传统的滑模控制器以及扰动和观察方法进行了比较。获得的结果证明,在建立时间和输出电压纹波方面,所提出的控制器具有比其他控制器更好的性能。

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