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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Application of Split Ring Resonator (SRR) Loaded Transmission Lines to the Design of Angular Displacement and Velocity Sensors for Space Applications
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Application of Split Ring Resonator (SRR) Loaded Transmission Lines to the Design of Angular Displacement and Velocity Sensors for Space Applications

机译:分离式环形谐振器(SRR)负载传输线在空间应用的角位移和速度传感器设计中的应用

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摘要

The accurate measurement of the angular displacement and velocity of reaction wheels is necessary for attitude (orientation) control in space vehicles (satellites). In this paper, microwave, contactless, and low-cost (as compared to optical encoders) sensors useful for that purpose are analyzed in detail. The sensor consists of a rotor and a stator. The rotor is a disk (or a circular crown) of dielectric material, where one or several arrays of equidistant single-loop split ring resonators (SRRs) are etched along its edge, forming circular chains of hundreds of SRRs. The stator is a coplanar waveguide (CPW) also loaded with pairs of single-loop SRRs (etched in the back substrate side), with the centers located in the slot region. The sensing principle is based on the amplitude modulation of a harmonic (single-tone continuous wave) feeding signal, achieved when the chains of the rotor are displaced over the SRR pairs of the stator. Both sensor elements (rotor and stator) must be parallel oriented, with the SRR pairs of the CPW in close proximity to the SRR chains of the rotor (and rotated 180°), in order to favor their coupling. By this means, the transmission coefficient of the CPW is varied by the circular motion of the rotor, and significant amplitude modulation of the feeding signal is achieved. From the envelope function, the angular velocity can be accurately determined. With the proposed sensors, instantaneous and practically unlimited rotation speeds can be measured.
机译:为了控制航天器(卫星)的姿态(方向),必须准确测量反作用轮的角位移和速度。在本文中,详细分析了用于此目的的微波,非接触式和低成本(与光学编码器相比)传感器。传感器由转子和定子组成。转子是一个介电材料的圆盘(或圆顶),沿其边缘刻蚀一个或几个等距的单环开口环谐振器(SRR)阵列,形成数百个SRR的圆形链。定子是共面波导(CPW),也装有成对的单环SRR(在背面基板一侧蚀刻),其中心位于缝隙区域。感应原理基于谐波(单音连续波)馈电信号的幅度调制,该信号在转子的链条在定子的SRR对上移动时实现。两个传感器元件(转子和定子)必须平行定向,CPW的SRR对紧靠转子的SRR链(并旋转180°),以便于它们的耦合。通过这种方式,CPW的传输系数通过转子的圆周运动而改变,并且实现了馈电信号的显着幅度调制。根据包络函数,可以精确地确定角速度。利用所提出的传感器,可以测量瞬时的和实际上不受限制的转速。

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