Xia Dunzhu, Yao Mohan, Li Jinhui
School of Instrument Science and Engineering, Southeast University, Nanjing 210096, China.
Key Laboratory of Micro-Inertial Instrument and Advanced Navigation Technology, Ministry of Education, Nanjing 210096, China.
Micromachines (Basel). 2022 Jul 25;13(8):1174. doi: 10.3390/mi13081174.
A tri-axis accelerometer with a digital readout circuit and communication system is introduced. It is composed of two resonant accelerometers in the x and y-axis, and a seesaw capacitive one in the z-axis. The device is encapsulated in air to ensure that the z-axis works in an over-damped state. Moreover, the closed-loop drive circuit establishes the x-axis and y-axis in resonant mode, and the z-axis in force balance mode. A miniaturized measurement based on FPGA is designed to collect these output signals. The phase noise of the resonance part and the amplitude noise of the seesaw part are studied by simulation. The model can predict the contribution of each part to the measurement error and Allan variance. Multiplied clock and Kalman filter in sliding window are used to reduce the frequency error. The test results show that the accelerometer has low bias instability (<30 μg), low cross-coupling error (<0.5%), and low nonlinearity (<0.1%). The tri-axis digital accelerometer with serial ports is more valuable than the previous works with large commercial instruments.
介绍了一种带有数字读出电路和通信系统的三轴加速度计。它由x轴和y轴上的两个谐振加速度计以及z轴上的一个跷跷板电容式加速度计组成。该装置采用空气封装,以确保z轴在过阻尼状态下工作。此外,闭环驱动电路使x轴和y轴处于谐振模式,z轴处于力平衡模式。设计了一种基于FPGA的小型化测量方法来采集这些输出信号。通过仿真研究了谐振部分的相位噪声和跷跷板部分的幅度噪声。该模型可以预测各部分对测量误差和阿伦方差的贡献。采用倍频时钟和滑动窗口卡尔曼滤波器来降低频率误差。测试结果表明,该加速度计具有低偏置不稳定性(<30μg)、低交叉耦合误差(<0.5%)和低非线性度(<0.1%)。具有串行端口的三轴数字加速度计比以前使用大型商业仪器的工作更有价值。