汽车动力总成整体转子位置传感器系统特性研究

Christoph Datlinger, M. Hirz, A. Anuchin
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引用次数: 0

摘要

电动汽车牵引传动需要精确、可靠和高效的控制,以满足运行的安全性、舒适性和效率要求。在这种情况下,利用传感器系统来确定永磁同步电机的当前转子轴位置,而潜在的测量偏差可能会影响电机控制的质量。由于集成涉及功能,可靠性和空间要求,因此可以使用各种测量原理和传感器系统技术(例如解析器,电感式或基于霍尔的)。在整体传感器测量链中识别潜在误差源对于提供实时条件下转子轴位置的准确确定至关重要。在此背景下,本文介绍了永磁同步电机动力系统转子位置传感器系统整体角误差表征的通用程序。提出的方法包括对最先进的转子位置传感器系统及其可能产生的误差的检查,这些误差可能导致角度信息的失真。除了考虑机械偏差和热影响外,还特别关注传感器信号处理,以详细阐述潜在误差的起源。所介绍的方法在任意转子位置传感器系统的基于实验的误差表征过程中得到了示例性应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Holistic Rotor Position Sensor System Characterization for Automotive Powertrains
Electrified automotive traction drives require precise, reliable and efficient control in order to meet operational safety-, comfort- and efficiency demands. In this context, sensor systems are utilized to determine the current rotor shaft position of Permanent Magnet Synchronous Motors, whereby potential measurement deviations may have impact on the quality of motor control. Since the integration involves functional-, reliability- and space requirements, various measurement principles and sensor system technologies are available (e.g. resolver, inductive or Hall-based). Identification of potential error sources in the holistic sensor measurement chain is vital to provide an accurate determination of the rotor shaft position under real-time conditions. In this context, the present paper introduces a generic procedure for holistic angular error characterization of rotor position sensor systems in Permanent Magnet Synchronous Motor-based powertrains. The presented approach includes an examination of state-of-the-art rotor position sensor systems and their potential arising errors, which can lead to a distortion of the angular information. Besides a consideration of mechanical deviations and thermal influences, special focus is put on sensor signal processing to elaborate origins of potential errors in a high level of details. The introduced methodology is exemplary applied in the course of experimental-based error characterization for an arbitrary rotor position sensor system.
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