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Digital architecture for vibrating inertial sensors: modularity, performances, self-calibrations

机译:用于振动惯性传感器的数字架构:模块化,性能,自校准

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This paper presents a fully integrated inertial instrument composed of a vibrating sensor and a Field-Programmable Gate Array (FPGA) device. This digital architecture ensures the electronic driving of the resonator and its response measurement in a reduced space. The current FPGA performances allow to easily adjust frequency, phase and magnitude of the excitation respectively better than 1 μHz, 10 μrd, and 0,01% of full scale. Therefore, this architecture is especially suitable to the use of feedback-control loops. The instrument is connected to an On Board Computer by serial communication. The performances obtained with this architecture are 0,8 μg bias instability, 60 μg of residual thermal bias stability for the accelerometer, 1 °/h bias instability, and 0,03 °/{the square root of}h angular random walk for gyroscope.
机译:本文介绍了由振动传感器和现场可编程门阵列(FPGA)设备组成的完全集成的惯性仪器。该数字架构确保了谐振器的电子驱动及其在减少空间中的响应测量。目前的FPGA性能允许容易地调节激发的频率,相位和大小优于1μHz,10μRAd和0.01%的满量程。因此,这种架构特别适合使用反馈控制回路。仪器通过串行通信连接到船上计算机上。使用该架构获得的性能为0.8μg偏置不稳定性,为加速度计,1°/ H偏置不稳定性为0.0μg的残余热偏置稳定性,并且为陀螺仪的} H角随机行走的0,03°/ {平方根。 。

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