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Microwave Wire Interrogation Method Mapping Pressure under High Temperatures

机译:高温下微波线探查方法测压

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摘要

It is widely accepted that wireless reading for in-situ mapping of pressure under high-temperature environments is the most feasible method, because it is not subject to frequent heterogeneous jointing failures and electrical conduction deteriorating, or even disappearing, under heat load. However, in this article, we successfully demonstrate an in-situ pressure sensor with wire interrogation for high-temperature applications. In this proof-of-concept study of the pressure sensor, we used a microwave resonator as a pressure-sensing component and a microwave transmission line as a pressure characteristic interrogation tunnel. In the sensor, the line and resonator are processed into a monolith, avoiding a heterogeneous jointing failure; further, microwave signal transmission does not depend on electrical conduction, and consequently, the sensor does not suffer from the heat load. We achieve pressure monitoring under 400 °C when employing the sensor simultaneously. Our sensor avoids restrictions that exist in wireless pressure interrogations, such as environmental noise and interference, signal leakage and security, low transfer efficiency, and so on.
机译:众所周知,在高温环境下无线读取压力原位图是最可行的方法,因为在热负荷下,无线读取不受频繁的异质连接故障和导电性恶化甚至消失的影响。但是,在本文中,我们成功地演示了用于高温应用的带导线询问的原位压力传感器。在压力传感器的概念验证研究中,我们使用微波谐振器作为压力传感组件,并使用微波传输线作为压力特性询问通道。在传感器中,将线路和谐振器加工成一个整体,避免了异类的连接失败;此外,微波信号的传输不依赖于导电,因此,传感器不会受到热负荷的影响。同时使用传感器时,我们可以在400°C下实现压力监控。我们的传感器避免了无线压力查询中存在的限制,例如环境噪声和干扰,信号泄漏和安全性,低传输效率等。

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