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Temperature Issues in Saliency-Tracking-Based Sensorless Methods for PM Synchronous Machines

机译:永磁同步电机基于显着性跟踪的无传感器方法中的温度问题

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摘要

High-frequency carrier signal excitation has been widely investigated for the position sensorless control of permanent-magnet synchronous machines (PMSMs) near and at zero speed. Selection of the injected signal characteristics (shape, frequency, magnitude, etc.) is a tradeoff between performance criteria of the sensorless control (stability, accuracy, robustness, bandwidth, etc.) and minimization of its adverse effects (additional losses, noise, vibration, etc.). The increased losses due to the injected signal can be of importance in PMSMs since they can produce a significant increase of the temperature in the rotor magnets. This can adversely impact the normal operation of the machine and can eventually result in the irreversible demagnetization of the magnets. This paper analyzes the impact that excitation using high-frequency signals for sensorless control of PMSMs has on the machine's temperature. The machine design, as well as the type of injected high-frequency signal, will be shown to strongly influence the machine's thermal behavior. Analytical models will be developed to explain this behavior, with experimental results being used to verify the analysis.
机译:高频载波信号激励已被广泛研究用于零速附近和零速永磁同步电机(PMSM)的无位置传感器控制。选择注入信号的特性(形状,频率,幅度等)是无传感器控制的性能标准(稳定性,准确性,鲁棒性,带宽等)和其不利影响(附加损耗,噪声,振动等)。由于注入信号引起的损耗增加在PMSM中可能非常重要,因为它们会导致转子磁体中的温度显着升高。这可能会对电机的正常运行产生不利影响,并最终导致磁体发生不可逆的退磁。本文分析了使用高频信号进行PMSM的无传感器控制的励磁对机器温度的影响。机器的设计以及注入的高频信号的类型将显示出强烈影响机器的热性能。将开发分析模型来解释这种行为,并使用实验结果来验证分析。

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