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Maximum Power Point Tracking Sensorless Control of an Axial-Flux Permanent Magnet Vernier Wind Power Generator

机译:轴向磁通游标风力发电机的最大功率点跟踪无传感器控制

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Recently, Vernier permanent magnet (VPM) machines, one special case of magnetic flux-modulated (MFM) machines, benefiting from their compact, simple construction and low-speed/ high-torque characteristics, have been receiving increasing interest. In this paper, the Vernier structure is integrated with an axial-flux PM machine to obtain the magnetic gear effect and produce an improved torque density for direct-drive wind power generation application. Another advantage of the proposed machine is that the stator flux rotating speed can be relatively high when the shaft speed is low. With this benefit, sensorless control strategy can be easily implemented in a wide speed range. In this paper, an improved sliding mode observer (SMO) is proposed to estimate the rotor position and the speed of the proposed machine. With the estimated shaft speeds, the maximum power point tracking (MPPT) control strategy is applied to maximize the wind power extraction. The machine design and the sensorless MPPT control strategy are verified by finite element analysis and experimental verification.
机译:最近,得益于其紧凑,简单的结构以及低速/高转矩特性,作为磁通调制(MFM)机器的一种特殊情况的Vernier永磁(VPM)机器受到了越来越多的关注。本文将Vernier结构与轴向磁通PM电机集成在一起,以获得磁力齿轮效应,并为直接驱动风力发电应用产生更高的扭矩密度。所提出的电机的另一个优点是,当轴速度低时,定子磁通旋转速度可以相对较高。受益于此,无传感器控制策略可以轻松地在较宽的速度范围内实施。在本文中,提出了一种改进的滑模观测器(SMO)来估计转子位置和拟议机器的速度。通过估算的轴速,可以应用最大功率点跟踪(MPPT)控制策略来最大程度地利用风能。通过有限元分析和实验验证,验证了机器设计和无传感器MPPT控制策略。

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