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Novel Gyroscopic Mounting for Crystal Oscillators to Increase Short and Medium Term Stability under Highly Dynamic Conditions

机译:用于晶体振荡器的新型陀螺仪支架,可在高动态条件下增加短期和中期的稳定性

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In this paper, a gyroscopic mounting method for crystal oscillators to reduce the impact of dynamic loads on their output stability has been proposed. In order to prove the efficiency of this mounting approach, each dynamic load-induced instability has been analyzed in detail. A statistical study has been performed on the elevation angle of the g-sensitivity vector of Stress Compensated-cut (SC-cut) crystals. The analysis results show that the proposed gyroscopic mounting method gives good performance for host vehicle attitude changes. A phase noise improvement of 27 dB maximum and 5.7 dB on average can be achieved in the case of steady state loads, while under sinusoidal vibration conditions, the maximum and average phase noise improvement are as high as 24 dB and 7.5 dB respectively. With this gyroscopic mounting method, random vibration-induced phase noise instability is reduced 30 dB maximum and 8.7 dB on average. Good effects are apparent for crystal g-sensitivity vectors with low elevation angle φ and azimuthal angle β. under highly dynamic conditions, indicating the probability that crystal oscillator instability will be significantly reduced by using the proposed mounting approach.
机译:本文提出了一种用于晶体振荡器的陀螺安装方法,以减少动态负载对其输出稳定性的影响。为了证明这种安装方法的效率,已对每种动态载荷引起的不稳定性进行了详细分析。已对应力补偿切割(SC切割)晶体的g敏感度矢量的仰角进行了统计研究。分析结果表明,所提出的陀螺仪安装方法对于本车姿态变化具有良好的性能。在稳态负载的情况下,可以实现最大27 dB的相位噪声改善和平均5.7 dB的相位噪声改善,而在正弦振动条件下,最大和平均相位噪声改善分别高达24 dB和7.5 dB。通过这种陀螺仪安装方法,随机振动引起的相位噪声不稳定性最大降低了30 dB,平均降低了8.7 dB。对于具有低仰角φ和方位角β的晶体g敏感度矢量,效果很好。在高动态条件下,表明使用建议的安装方法将大大降低晶体振荡器不稳定性的可能性。

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