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Wireless temperature sensing using temperature-sensitive dielectrics within responding electric fields of open-circuit sensors having no electrical connections

机译:在没有电连接的开路传感器的响应电场内使用对温度敏感的电介质进行无线温度感测

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摘要

All temperature sensors or sensor systems previously developed have one common feature--the sensors are part of electrically closed circuits and electrical connections are used to form the closed circuits. Using existing frameworks for designing, powering and interrogating sensors, any damage that ruptures the circuit can render the sensor non-functional. In many damage events, it is necessary to identify that the damage has occurred and also continue the measurement. In this paper we report a new temperature sensing method that uses a recently developed technique for designing, powering and interrogating sensors developed at NASA. In lieu of sensors being a collection of components assembled using electrical connections, the open-circuit sensors are patterns of electrically conductive material that can store electric fields and magnetic fields without electrical connections. These sensors are powered using oscillating magnetic fields and respond with their own electric and magnetic fields whose signatures provide temperature information. Because no electrical connections are used, there is no point on the sensor that if damaged renders the sensor non-functional. Damage to the sensor simply shifts the sensor's frequency range, allowing it to continue measurement while damaged. Temperature-sensitive dielectric material is placed within the sensor's responding electric field to modulate the sensor's resonant frequency. Temperature sensitivity and functional temperature range are dependent upon the temperature-sensitive material used and how it is placed within sensor's responding electric field. The principle and design strategies of the open-circuit temperature sensors are discussed and experimental results are presented.
机译:以前开发的所有温度传感器或传感器系统都有一个共同的特征-传感器是电气闭合电路的一部分,电气连接用于形成闭合电路。使用现有的框架来设计,供电和询问传感器,任何破坏电路的损坏都会使传感器无法工作。在许多损坏事件中,有必要确定损坏已发生并继续进行测量。在本文中,我们报告了一种新的温度传感方法,该方法使用了最近开发的技术来设计,供电和询问由NASA开发的传感器。代替传感器的是使用电连接组装的组件的集合,开路传感器是导电材料的图案,可以在没有电连接的情况下存储电场和磁场。这些传感器使用振荡磁场供电,并通过其自身的电场和磁场响应,其信号提供温度信息。由于未使用任何电气连接,因此传感器上没有任何点受损(如果损坏)会使传感器无法正常工作。损坏传感器只会改变传感器的频率范围,使其在受损时继续测量。温度敏感的介电材料放置在传感器的响应电场内,以调制传感器的谐振频率。温度灵敏度和功能温度范围取决于所使用的温度敏感材料及其在传感器响应电场中的放置方式。讨论了开路温度传感器的原理和设计策略,并给出了实验结果。

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