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SENSORLESS VECTOR CONTROL OF A PERMANENT MAGNET SYNCHRONOUS GENERATOR FOR MICRO HYDRO POWER

机译:用于微型水电力的永磁同步发电机的无传感器矢量控制

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In vector controlled operation of a permanent magnet synchronous generator (PMSG), the rotor position must be known at all times. As position sensors are expensive and vulnerable in harsh environment, sensorless strategies are becoming more and more popular. The paper gives a short overview over common sensorless position estimation strategies and shows a MATLAB/Simulink simulation for the sensorless methods Flux Estimation and Sliding Mode Observer. Furthermore, a vector control on a PMSG including a sliding mode observer model for sensorless rotor position estimation is implemented on a TI Concerto processor (Cortex M3 and C28x DSP dualcore) for a frequency inverter for micro hydro power generation. A new approach is the utilization of a dualcore processor in this application: the Cortex M3 runs communication and general system tasks in a micro hydro power generation site, whereas the C28x DSP focuses on the generator control task. TI's real-time operating system SYS/BIOS runs on both cores, guaranteeing easy extension of functionality.
机译:在导航控制操作的永磁同步发电机(PMSG)中,必须始终知道转子位置。由于位置传感器昂贵并且在恶劣环境中易受群体,无传感器策略变得越来越受欢迎。本文还提供了常见的无传感器位置估计策略的简短概述,并显示了无传感器方法通量估计和滑动模式观测器的MATLAB / Simulink仿真。此外,在包括用于无传感器转子位置估计的滑模观察模型的PMSG上的矢量控制在用于微水流发电的频率逆变器的TI Concerto处理器(Cortex M3和C28X DSP Dualcore上)实现。一种新方法是在本申请中利用Dualcore处理器:Cortex M3在Micro Hydro发电站点中运行通信和一般系统任务,而C28x DSP专注于发电机控制任务。 TI的实时操作系统SYS / BIOS在两个核心上运行,保证易于扩展功能。

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