High-Q and wide dynamic range inertial MEMS for north-finding and tracking applications

A. Trusov, I. Prikhodko, S. Zotov, A. Shkel
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引用次数: 15

Abstract

We report high-Q and wide dynamic range MEMS gyroscopes and accelerometers for development of an IMU capable of north finding and tracking. The vacuum sealed SOI gyroscope utilizes symmetric quadruple mass architecture with measured quality factors of 1.2 million and proven sub-°/hr Allan deviation of bias. The true north detection was accomplished in conventional amplitude modulated (AM) rate mode and showed 3 milliradian measurement uncertainty. The north (azimuth) tracking necessitates a wide dynamic range, for which the same QMG transducer is switched to a frequency modulated (FM) modality. The test results for FM operation experimentally demonstrated a wide linear input rate range of 18,000 °/s and inherent self-calibration against temperature changes. Vertical alignment is possible using resonant accelerometers with a projected bias error of 5 μg and self-calibration against temperature variations, enabled by differential frequency measurements. We believe the developed low dissipation inertial MEMS with interchangeable AM/FM modalities may enable wide dynamic range IMUs for north-finding and inertial guidance applications previously limited to optical and quartz systems.
用于寻北和跟踪应用的高q宽动态范围惯性MEMS
我们报告了高q和宽动态范围的MEMS陀螺仪和加速度计,用于开发能够寻北和跟踪的IMU。真空密封SOI陀螺仪采用对称的四重质量结构,测量质量因子为120万,经证实偏差偏差为亚°/hr。真北探测采用常规调幅(AM)速率模式,测量不确定度为3毫弧度。北(方位角)跟踪需要一个宽的动态范围,为此,相同的QMG换能器切换到调频(FM)模式。调频操作的实验结果表明,该系统具有18000°/s的宽线性输入速率范围,并具有针对温度变化的自校准特性。垂直校准可以使用谐振加速度计,其投影偏置误差为5 μg,并通过差频测量实现对温度变化的自校准。我们相信开发的具有可互换AM/FM模态的低耗散惯性MEMS可以为以前仅限于光学和石英系统的寻北和惯性制导应用提供宽动态范围的imu。
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