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An Angular Displacement Sensor Based on Microwave Transversal Signal Interference Principle

机译:基于微波横向信号干扰原理的角位移传感器

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摘要

A novel rotational angle microwave sensor with a high dynamic range and sensitivity for detecting angular displacement is presented. It exploits the spectral separation between two notch frequencies or transmission zeros that are generated in its transfer function, and whose value varies as a function of the rotation angle to be measured. The sensor is based on a bi-path transversal-signal-interference (TSI) circuit configuration that is implemented on microstrip technology, where a rotor comprised of an open-circuit-ended stub is loaded onto a stator of this transversal circuit with equal-length electrical paths. The mechanical rotation of the rotor changes the contact point of the open-circuit-ended line to the stator, thus effectively modifying one of the overall paths of the stator and, hence, the inter-transmission-zero separation. Design guidelines for the synthesis of the proposed rotation sensor with a specified dynamic range and sensitivity are provided. Furthermore, a proof-of-concept microstrip-substrate-based prototype with an angular rotation range of 180° is developed at 920 MHz and tested to validate this approach experimentally.
机译:提出了一种具有高动态范围和用于检测角位移的灵敏度的新型旋转角微波传感器。它利用在其传递函数中产生的两个缺口频率或传输零之间的光谱分离,并且其值随着要测量的旋转角度而变化。该传感器基于在微带技术上实现的双路横向信号干扰(TSI)电路配置,其中由开路端部带的转子加载到该横向电路的定子上,其具有相等 - 长度电路。转子的机械旋转将开路端部的接触点改变为定子,从而有效地修改定子的整体路径之一,因此,透射帧零间分离。提供了具有规定动态范围和灵敏度的所提出的旋转传感器的合成的设计指南。此外,在920MHz的角度旋转范围的基于角度旋转范围的基于概念的微带基板的原型,并测试了实验验证该方法。

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