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Self-Powered RFID Sensor Tag for Fault Diagnosis and Prognosis of Transformer Winding

机译:自供电的RFID传感器标签,用于变压器绕组的故障诊断和故障诊断

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摘要

This paper presents a transformer winding fault diagnosis and prognosis method based on self-powered radio frequency identification (RFID) sensor tag. The proposed RFID sensor tag, which consists of RFID tag, power management circuit, MCU, and accelerometer, can acquire the vibration signals of transformer winding from the tank by accelerometer, and then wirelessly transmit the signals to the RFID reader. An inductive energy harvester utilizing surrounding magnetic field is optimized as power supply for the proposed sensor tag, including the MCU and the accelerometer. A customized ac–dc converter together with a low-dropout voltage regulator is designed to provide stable dc voltage for the proposed sensor tag. The RFID reader compiles the data from all the RFID sensor tags and then transmits them to the remote monitoring software which is developed to display the diagnosis results and alert messages. The experimental results show that the proposed energy harvester can provide 197- power in a 50-Hz magnetic field, and the ac–dc converter is capable of providing 2.5-V dc voltage to power the circuitry. The measured maximum power consumption of the proposed sensor tag is 147 . Furthermore, the achieved reliable communication distance is 13 m in the test scenario. The experimental results show that the proposed method is effective in term of the diagnosis and prognosis of transformer winding.
机译:提出了一种基于自供电射频识别(RFID)传感器标签的变压器绕组故障诊断与诊断方法。提出的RFID传感器标签由RFID标签,电源管理电路,MCU和加速度计组成,可以通过加速度计从储罐获取变压器绕组的振动信号,然后将其无线传输到RFID读取器。利用周围磁场的感应式能量收集器已被优化为拟议的传感器标签(包括MCU和加速度计)的电源。定制的ac-dc转换器与低压差稳压器一起设计用于为建议的传感器标签提供稳定的dc电压。 RFID阅读器会编辑所有RFID传感器标签中的数据,然后将它们传输到远程监控软件,该软件开发用于显示诊断结果和警报消息。实验结果表明,所提出的能量采集器可以在50 Hz的磁场中提供197-电源,而AC-DC转换器可以提供2.5-V的直流电压为电路供电。提议的传感器标签的测得的最大功耗为147。此外,在测试场景中,获得的可靠通信距离为13 m。实验结果表明,该方法对变压器绕组的诊断和预后是有效的。

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