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INERTIAL SATELLITE MODULE AND COMPLEX INERTIAL SATELLITE SYSTEM FOR NAVIGATION, COMMUNICATION, LOCATION ILLUMINATION AND CONTROL

机译:用于导航,通信,位置照明和控制的惯性卫星模块和复杂的惯性卫星系统

摘要

FIELD: navigation. SUBSTANCE: inertial satellite module determines nine integral parameters by each of errors by three coordinates and three projections of linear velocity in unit of determination of integral errors. On their basis another unit determines physical errors which then are compensated in navigational parameters found on the basis of reading of inertial sensors unit. Inertial satellite modules positioned on frame of object render capability to determine linear and angular deformations of object in units 13 determining linear deformations and in units 14 determining angular deformations. By information from base inertial-satellite module 10 position of object with respect to ν objects is determined in unit 18 of illumination of navigational situation. Information on current deformations of hull of vessel goes to recording unit 16 and is used by vessel navigator. Information on coordinates of object and on their derivatives goes from output of navigational communication unit 17 on the air for generation of relative parameters by any of other objects. EFFECT: enhanced authenticity and precision of generation of navigational parameters by inertial satellite module, increased authenticity of computations which allows safety of navigation to be improved on the basis of more complete and accurate information on vector of vessel condition, improved seaworthiness of vessel and control over strength characteristics of vessel. 2 cl, 2 dwg
机译:领域:导航。实质:惯性卫星模块通过三个坐标和三个线速度投影,以每个误差确定九个积分参数,以确定积分误差为单位。在此基础上,另一个单元确定物理误差,然后在基于惯性传感器单元的读数找到的导航参数中对其进行补偿。定位在物体框架上的惯性卫星模块具有确定物体的线性和角度变形的能力,该单元在确定线性变形的单元13中以及在确定角度变形的单元14中。通过来自基本惯性卫星模块10的信息,在导航情况的照明单元18中确定物体相对于ν个物体的位置。有关船舶船体当前变形的信息进入记录单元16,并由船舶导航器使用。有关对象坐标及其衍生物的信息来自导航通信单元17在空中的输出,用于通过任何其他对象生成相对参数。效果:通过惯性卫星模块提高了导航参数生成的真实性和准确性,增加了计算的真实性,这使得可以在更完整和准确的船舶状况向量信息的基础上提高导航的安全性,改善船舶的适航性并控制容器的强度特性。 2 cl,2 dwg

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