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Improved equivalent circuit modeling and simulation of magnetostrictive tuning fork gyro sensors

机译:改进的磁致伸缩音叉陀螺仪传感器的等效电路建模和仿真

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In this paper a new equivalent circuit is presented which describes the dynamics of a prototype micro-gyro sensor. The concept takes advantage of the principles employed in vibratory gyro sensors and the ductile attributes of GalFeNOL to target high sensitivity and shock tolerance. The sensor is designed as a tuning fork structure. A GalFeNOL patch attached to the y-z surface of the drive prong causes both prongs to bending the x-z plane (about the y axis) and a patch attached to the x-z surface of the sensing prong detects Coriolis-force induced bending in the y-z plane (about the x axis). A permanent magnet is bonded on top of each prong to give bias magnetic fields. A solenoid coil surrounding the drive prong is used to produce bending in the x-z plane of both prongs. The sensing prong is surrounded by a solenoid coil with N turns in which a voltage proportional to the time rate of change of magnetic flux is induced. The equivalent circuit enables the efficient modeling of a gyro sensor and an electromechanical behavioral simulation using the circuit simulator SPICE. The prongs are modeled as wave guiding bending beams which are coupled to the electromagnetic solenoid coil transducer. In contrast to known network approaches, the proposed equivalent circuit is the first tuning fork model, which takes full account of the fictitious force in a constant rotating frame of reference. The Coriolis force as well as the centrifugal force on a concentrated mass are considered.
机译:在本文中,提出了一种新的等效电路,该电路描述了原型微陀螺仪传感器的动力学特性。该概念利用了振动陀螺仪传感器所采用的原理以及GalFeNOL的韧性属性,以实现高灵敏度和耐冲击性。该传感器设计为音叉结构。附着在驱动插脚yz表面上的GalFeNOL补片会导致两个插脚都弯曲xz平面(绕y轴),而附着在传感插脚xz表面上的补片会检测到科里奥利力在yz平面中引起的弯曲(大约x轴)。永磁体粘结在每个插脚的顶部,以提供偏置磁场。驱动叉周围的电磁线圈用于在两个叉的x-z平面上产生弯曲。传感插脚被N匝的螺线管线圈围绕,其中感应出与磁通量的时间变化率成比例的电压。等效电路可使用电路仿真器SPICE对陀螺仪传感器进行高效建模,并进行机电行为仿真。插脚被建模为与电磁螺线管线圈传感器耦合的导波弯曲梁。与已知的网络方法相比,建议的等效电路是第一个音叉模型,该模型充分考虑了恒定旋转参考系中的虚拟力。考虑了科里奥利力以及浓缩物上的离心力。

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