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首页> 外文期刊>IEEE sensors journal >An Angular-Displacement Microwave Sensor Using an Unequal-Length-Bi-Path Transversal Filtering Section
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An Angular-Displacement Microwave Sensor Using an Unequal-Length-Bi-Path Transversal Filtering Section

机译:使用不等长度-Bi路径横向滤波部分的角位移微波传感器

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摘要

A class of angular-displacement microwave sensor based on a microwave signal-interference transversal filtering section (TFS) with unequal-electrical-length paths is reported for the first time. It consists of a bi-path TFS composed of two in-parallel transmission-line segments with distinct lengths, which is modified by adding a rotational open-circuit-ended stub as the rotor to a curved section as the stator of one of its line segments. In this manner, the spectral positions of the transmission zeros, which are produced in its filtering transfer function through destructive signal-energy interactions, are modified with the rotation of this additional stub. This allows single/multi-band angular-displacement microwave-sensing capabilities in terms of transmission-zero inter-spacing variation for passbands/stopbands and stopband-peak-level modification to be attained by means of the mechanical rotation of the rotor. The theoretical operational principles of this type of bi-path-TFS-based angular-displacement-microwave sensor and design curves for specific values of its electrical parameters are provided. Moreover, for experimental validation purposes, a proof-of-concept prototype of the devised TFS-based microwave-sensor approach operating at 961 MHz with 180 degrees dynamic range is prototyped in microstrip technology and measured. A comparative analysis of the developed angular-displacement microwave sensor with the state-of-the-art is also presented.
机译:首次报告了基于微波信号干扰横向滤波部分(TFS)的一类角位移微波传感器,其具有不等电长路径。它包括由具有不同长度的两个有同并行传输线段组成的双路径TF,其通过将旋转开路端结束的短截线作为转子添加到弯曲部分作为其线之一的定子来修改。细分。以这种方式,通过该附加短截线的旋转来修改通过破坏性信号 - 能量相互作用在其滤波传递函数中产生的传输零的光谱位置。这允许通过转子的机械旋转来实现单个/多带角位移微波感测能力和用于通过转子的机械旋转来实现的通带/停机频率和停车峰级修改。提供了这种基于Bi-Path-TFS的角位移微波传感器和设计曲线的理论运行原理,用于其电气参数的特定值。此外,对于实验验证目的,设计了在961 MHz的基于TFS的微波传感器方法的概念上的验证原型,其动态范围为180度,以微带技术原型化,并测量。还提出了具有最新技术的显影角位移微波传感器的比较分析。

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