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A low cost, printed microwave based level sensor with integrated oscillator readout circuitry

机译:具有集成振荡器读数电路的低成本,印刷的微波电平传感器

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This paper presents an extremely low cost, tube conformable, printed T-resonator based microwave level sensor, whose resonance frequency shifts by changing the level of fluids inside the tube. Printed T-resonator forms the frequency selective element of the tunable oscillator. Unlike typical band-pass resonators, T-resonator has a band-notch characteristics because of which it has been integrated with an unstable amplifying unit having negative resistance in the desired frequency range. Magnitude and phase of input reflection coefficient of the transistor has been optimized over the desired frequency range. Phase flattening technique has been introduced to maximize the frequency shift of the oscillator. With the help of this technique, we were able to enhance the percentage tuning of the oscillator manifolds which resulted into a level sensor with higher sensitivity. The interface level of fluids (oil and water in our case) causes a relative change in oscillation frequency by more than 50% compared to maximum frequency shift of 8% reported earlier with dielectric tunable oscillators.
机译:本文呈现极低的成本,管适形的,印花T谐振器基于微波水平传感器,其共振频率偏移,通过改变管内的流体的水平。印花T谐振器形成所述可调谐振荡器的频率选择元件。不同于典型的带通谐振器,T-谐振器具有因其中它已集成了具有在期望频率范围内的负电阻不稳定的放大单元的带凹口的特性。幅度和该晶体管的输入反射系数的相位已被优化在期望的频率范围。相变平技术已被引入到最大化振荡器的频率偏移。利用这种技术的帮助下,我们能够提高振荡器歧管导致与灵敏度更高的水平传感器的比例调整。流体(油和水在我们的例子)的接口电平相比,最大频率偏移8%较早与介电调谐振荡器报告超过50%,则振荡频率的相对变化。

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