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Miniaturzed self-adaptive tuning of MEMS gyroscope for Space

机译:MEMS陀螺空间的小型自适应调整

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We propose a tuning method for Micro-Electro-Mechanical Systems (MEMS) gyroscopes based on evolutionary computation that has the capacity to efficiently increase the sensitivity of MEMS gyroscopes through tuning and, furthermore, to find the optimally tuned configuration for this state of increased sensitivity. We present the results of an experiment to determine the speed and efficiency of an evolutionary algorithm applied to electrostatic tuning of MEMS micro gyros. The MEMS gyro used in this experiment is a pyrex post resonator gyro (PRG) in a closed-loop control system. A measure of the quality of tuning is given by the difference in resonant frequencies, or frequency split, for the two orthogonal rocking axes. The current implementation of the closed-loop platform is able to measure and attain a relative stability in the sub-millihertz range, leading to a reduction of the frequency split to less than 100 mHz.
机译:我们提出了一种基于进化计算的微电机械系统(MEMS)陀螺仪的调谐方法,其具有能够有效地通过调谐的能力,并且此外,找到最佳调整的敏感性的最佳配置 。 我们介绍了实验的结果,以确定应用于MEMS微陀螺静电调谐的进化算法的速度和效率。 本实验中使用的MEMS陀螺仪是闭环控制系统中的Pyrox柱谐振器陀螺仪(PRG)。 对于两个正交摇动轴,通过谐振频率或频率分裂的差异给出了调谐质量的量度。 闭环平台的电流实现能够测量并达到子毫米赫尔兹范围内的相对稳定性,导致频率分裂的减少到小于100 MHz。

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