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A Comparative Analysis of Pulsating Carrier Injection vs. Extended Kalman Filter Injection-Based Sensorless Control

机译:基于脉动载波注入与基于扩展卡尔曼滤波器注入的无传感器控制的比较分析

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Sensorless control for electrical drives is still a challenge in the low-speed and standstill region. Solutions that inject a high frequency signal in order to generate position dependent harmonics are well known for their good performance in this particular speed range. The possibility to combine signal injection techniques with model-based observers could be a solution for sensorless control over the whole speed range. In this paper, a pulsating vector carrier signal injection is used with two different estimation methods. First method is based on the commonly used filtering and demodulation associated to the pulsating carrier method, and for the second method, an injection-based Extended Kalman Filter is proposed in order to estimate the rotor position. This two methods are analysed, we concentrate on: parameter tuning, transitory response and noise attenuation. The analysis is supported by experimental measurements obtained on a salient-pole permanent magnet synchronous machine. The results show the satisfactory performance of both methods and the potential to use the proposed injection-based Extended Kalman Filter from standstill to the high-speed region.
机译:在低速和静止区域,电气驱动器的无传感器控制仍然是一个挑战。注入高频信号以生成位置相关谐波的解决方案以其在特定速度范围内的良好性能而闻名。将信号注入技术与基于模型的观测器相结合的可能性可能是在整个速度范围内进行无传感器控制的解决方案。在本文中,脉动矢量载波信号注入用于两种不同的估计方法。第一种方法基于与脉动载波法相关的常用滤波和解调,而第二种方法则提出了基于注入的扩展卡尔曼滤波器,以估计转子位置。分析了这两种方法,我们主要研究:参数调整,瞬态响应和噪声衰减。该分析得到在凸极永磁同步电机上获得的实验测量的支持。结果表明这两种方法均具有令人满意的性能,并且有可能在从静止到高速区域使用建议的基于注入的扩展卡尔曼滤波器。

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