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Torque measurements in synchronous generators using giant magnetoresistive sensor arrays via the Maxwell stress tensor

机译:使用巨型磁阻传感器阵列通过Maxwell应力张量测量同步发电机中的扭矩

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Power system oscillations arise from various sources. One contributor that is difficult to quantify during operation is the induced (air-gap) torque. This paper presents a new approach for measuring the instantaneous air-gap torque in real-time for synchronous generators. This is achieved through recent progress in nanowire giant magnetoresistive sensor (GMR) technology that now makes it possible to directly measure magnetic fields in the air-gap of operating electrical machinery. Results show that it is possible to compute the instantaneous air-gap induced electrical torque by evaluating a discretized form of the Maxwell stress tensor. This torque measurement can then be used to extract information on the operating condition of a synchronous generator in real-time. A prototype GMR sensor is evaluated. Analysis for generator diagnostics and detection of torsional oscillations is presented.
机译:电力系统的振荡是由各种原因引起的。在运行过程中难以量化的一个贡献因素是感应(气隙)扭矩。本文提出了一种用于同步发电机实时测量瞬时气隙转矩的新方法。这是通过纳米线巨型磁阻传感器(GMR)技术的最新进展实现的,该技术现在使直接测量正在运行的电机的气隙中的磁场成为可能。结果表明,可以通过评估麦克斯韦应力张量的离散形式来计算瞬时气隙感应电转矩。然后,该扭矩测量值可用于实时提取有关同步发电机运行状态的信息。对原型GMR传感器进行了评估。介绍了发电机诊断分析和扭振检测。

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