在牵引和白色家电应用中实现PM同步电机的快速初始位置和磁极估计

M. Harke, D. Raca, R. Lorenz, E. Schlevensky
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引用次数: 3

摘要

给出了永磁电机初始位置和磁极估计的一般解。该技术基于载波信号注入,具有快速、简单、参数不敏感等特点。它适用于不同功率水平的显著性和极低显著性永磁同步电机。理解实现的一个重要步骤是将显着性和磁极信息映射为转子位置的函数。提出了一种状态滤波器拓扑结构,以保证极低显着比下SPMSM初始位置和磁极估计的快速、平滑和鲁棒收敛。测试结果表明不同机器类型的性能是一致的
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Implementation of a fast initial position and magnet polarity estimation for PM synchronous machines in traction and white goods applications
A general solution for initial position and magnet polarity estimation on PM machines is presented. The technique is based on carrier frequency signal injection and proves to be fast, simple and parameter insensitive. It is applied to both salient and very low saliency PM synchronous machines of different power levels. An important step to understanding the implementation is to map the saliency and magnet polarity information as a function of rotor position. A state filter topology is proposed to ensure fast, smooth and robust convergence of the initial position and magnet polarity estimation for a SPMSM with an extremely low saliency ratio. Test results demonstrate consistent performance across different machine types
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