MEMS陀螺在雷达真北探测中的灵敏度分析

Sudarsana Jena, Ankur Gupta
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引用次数: 2

摘要

真北对准影响目标的方位角测量,对雷达跟踪性能有重要影响。现有的常规方法寻找真北耗费更多的时间和资源,精度差,在战时和在线数据监测场景下并不可取。为了克服这些问题,基于mems的陀螺仪是帮助在有限的资源和短时间内以高精度确定真北的潜在工具之一。本文提出了一种单质量MEMS陀螺仪的设计方案,该陀螺仪采用静电力驱动的梳状驱动器和差动电容传感机构。利用IntelliSuite 8.9 MEMS软件工具对所提出的设计进行了仿真。将分析结果与仿真结果进行了比较,进行了灵敏度分析。为了提高该装置在雷达真北探测应用中的灵敏度,对驱动和感应模式下的谐振频率失配进行了优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sensitivity Analysis of MEMS Gyroscope for Radar-based True North Finding Application
True north alignment plays an important role in radar tracking performance as it affects the target's azimuth measurement. Existing conventional methods to find out the true north consume more time and resources with poor accuracy which is not preferable during wartime as well as in online data monitoring scenarios. To overcome such problems, a MEMS-based gyroscope is one of the potential tools to assist in determining the true north with limited resources and a short period with high accuracy. In this paper, the design of a single mass MEMS gyroscope is proposed in which a comb drive operated with electrostatic force is used with a differential capacitance sensing mechanism. Simulation of the proposed design is performed using IntelliSuite 8.9 MEMS software tool. The analytical results have been compared with the simulation output for sensitivity analysis. To improve the sensitivity of the device for the true north finding application of radar, the resonance frequency mismatch in the drive and sense mode has been optimized.
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