首页> 外文会议>2015 Joint Conference of the IEEE International Frequency Control Symposium amp; European Frequency and Time Forum >Novel gyroscopic mounting for crystal oscillator (payload) applied in high dynamic host vehicle (platform) to improve its output stability
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Novel gyroscopic mounting for crystal oscillator (payload) applied in high dynamic host vehicle (platform) to improve its output stability

机译:应用于高动态宿主车辆(平台)的新型晶体振荡器(有效载荷)陀螺仪支架,以提高其输出稳定性

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When crystal oscillator applied in high dynamic host vehicle, dynamic loads impact its short and medium-term stability. In order to suppression and/or reduction these impacts, gyroscopic mounting is proposed to install oscillator on it. One of the main parameters which affect dynamic loads impacts on oscillator output is crystal g-sensitivity vector. Therefore, at first, statistical study has been accomplished on this parameter for SC-cut crystals which used in high dynamic oscillators. This study reveals that the angle between this vector and crystal surface (φ) nearly follows Rayleigh distribution with 1σ=19°. Thus, this vector tends to be close to crystal surface not perpendicular to it. Furthermore the analysis results of using gyro-mounting shows the acceptable results for quartz crystals with |φ|<;2σ=38° (85%). To prove gyro efficiency, its effect on each dynamic load is analyzed separately. The results of related analyses reveal that gyro shows its best for attitude change of host vehicle, such that it totally suppresses relevant disturbances. In the case of steady state load, sinusoidal and random vibrations, gyro best effects appear for |φ|<;30° and β angles which are not too close to 90°. Totally when high dynamic crystal oscillator is installed on gyro-mounting, the probability of observing instability on its output is reduced.
机译:当晶体振荡器应用于高动态宿主车辆时,动态负载会影响其短期和中期稳定性。为了抑制和/或减少这些影响,建议陀螺仪安装在其上安装振荡器。影响动态负载对振荡器输出的影响的主要参数之一是晶体g灵敏度矢量。因此,首先,已经对用于高动态振荡器的SC切割晶体的该参数进行了统计研究。这项研究表明,此向量与晶体表面(φ)之间的角度几乎遵循瑞利分布,且1σ= 19°。因此,该矢量倾向于靠近不垂直于其的晶体表面。此外,使用陀螺仪安装的分析结果显示了|φ| <;2σ= 38°(85%)的石英晶体的可接受结果。为了证明陀螺仪的效率,需要分别分析其对每个动态负载的影响。相关分析结果表明,陀螺仪最能表现出宿主车辆的姿态变化,从而完全抑制了相关干扰。在稳态负载,正弦振动和随机振动的情况下,对于|φ| <; 30°和β角不太接近90°的情况,陀螺仪效果最佳。当将高动态晶体振荡器安装在陀螺仪上时,总的来说,观察到其输出不稳定的可能性会降低。

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