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A Wireless Sensor Node Supporting Various Powers Supply and Communication Methods

机译:支持各种电源和通信方法的无线传感器节点

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Problem statement: This study presents a wireless sensor node dedicated for in-tire pressure and temperature monitoring. Additional features set it apart from the many different systems available on the highly competitive market. State-of-the-art implementations are mounted on the rim of a tire. Here the sensor node will be mounted on the inner liner of the tire. By moving the sensor node from the rim to the inner liner, new challenges in the analog design arise. Approach: To implement this sensor node new power supply methods are investigated. Next, analog designs with the focus on low power are developed. Since the sensor node is operated in a harsh environment, robustness is a key issue. Results: The discussed sensor is capable of either active or passive communication. The passive communication is used in the field of Radio Frequency Identification (RFID), whereas active communication is used to transmit the sensor data. A combination of both is also possible. To supply the chip in the tire an RF energy harvesting interface is implemented. An input sensitivity of-19.7dBm for the harvesting interface and -12.5 dBm for the RFID interface is measured. The on-chip temperature sensor consumes 4uA including the analog to digital converter. Conclusion: Choosing the discussed sensor node for in-tire monitoring enables new fields of applications. With this sensor node sensing additional parameters like road condition is possible. Using passive communication improves warehouse management for tire manufactures. Also, tire type identification at the car is enabled.
机译:问题陈述:这项研究提出了专用于轮胎内压力和温度监控的无线传感器节点。附加功能使它与竞争激烈的市场上可用的许多不同系统区分开来。最先进的实现方式安装在轮胎的轮辋上。此处,传感器节点将安装在轮胎的内衬上。通过将传感器节点从边缘移动到内衬,在模拟设计中出现了新的挑战。方法:为了实现此传感器节点,研究了新的电源方法。接下来,开发了以低功耗为重点的模拟设计。由于传感器节点在恶劣的环境中运行,因此坚固性是关键问题。结果:讨论的传感器能​​够进行主动或被动通信。被动通信用于射频识别(RFID)领域,而主动通信则用于传输传感器数据。两者的组合也是可能的。为了向轮胎中的芯片提供RF能量收集接口。采集接口的输入灵敏度为-19.7dBm,RFID接口的输入灵敏度为-12.5dBm。片上温度传感器消耗4uA的电流,包括模数转换器。结论:选择讨论的传感器节点进行轮胎内监测将启用新的应用领域。通过该传感器节点,可以感测其他参数,例如道路状况。使用被动通信可以改善轮胎制造商的仓库管理。而且,启用了汽车轮胎类型的识别。

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