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首页> 外文期刊>Metrology and Measurement Systems: Metrologia i Systemy Pomiarowe >MODELLING OF INFLUENCE OF HYPERSONIC CONDITIONS ON GYROSCOPIC INERTIAL NAVIGATION SENSOR SUSPENSION
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MODELLING OF INFLUENCE OF HYPERSONIC CONDITIONS ON GYROSCOPIC INERTIAL NAVIGATION SENSOR SUSPENSION

机译:高超声速条件对陀螺惯性导航传感器悬架的影响建模

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The upcoming hypersonic technologies pose a difficult task for air navigation systems. The article presents a designed model of elastic interaction of penetrating acoustic radiation with flat isotropic suspension elements of an inertial navigation sensor in the operational conditions of hypersonic flight. It has been shown that the acoustic transparency effect in the form of a spatial-frequency resonance becomes possible with simultaneous manifestation of the wave coincidence condition in the acoustic field and equality of the natural oscillation frequency of a finite-size plate and a forced oscillation frequency of an infinite plate. The effect can lead to additional measurement errors of the navigation system. Using the model, the worst and best case suspension oscillation frequencies can be determined, which will help during the design of a navigation system.
机译:即将到来的超音速技术对空气导航系统构成了一项艰巨的任务。本文介绍了穿透声学辐射的弹性相互作用的设计模型,其具有惯性导航传感器的平坦各向同性悬架元件在超声波飞行的操作条件下。已经表明,空间频率谐振形式的声透明度效应可以通过声场中的波重合条件的同时表现出和有限尺寸板的自然振荡频率的平等的同时表现出来,以及强制振荡频率的平等无限的板块。效果可能导致导航系统的额外测量误差。使用模型,可以确定最坏和最佳的壳体悬架振荡频率,这将有助于在导航系统的设计期间。

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