首页> 外国专利> METHOD FOR FORMING SIGNAL phase distortion compensation received signals reflected from the irradiated object sight, With its simultaneous direction finding inertial and inertial autosupport AND SYSTEM FOR CARRYING OUT

METHOD FOR FORMING SIGNAL phase distortion compensation received signals reflected from the irradiated object sight, With its simultaneous direction finding inertial and inertial autosupport AND SYSTEM FOR CARRYING OUT

机译:形成信号相位失真补偿的方法,该方法接收从被照物体看到的反射信号,同时具有方向检测惯性和惯性自动支撑,以及实施系统

摘要

FIELD: physics, navigation.;SUBSTANCE: invention relates to radar, viewing object autotracking systems, mobile carrier self-guidance systems, especially disposable carriers, and can be used in primary radar systems, i.e. in systems employing the radio wave reflection principle, as well as similar systems in which wavelength and type of waves are of no consequence, and also interconnected radar on-board self-guidance systems (OBSS) with a high level of integration, comprising radar and inertial autotracking systems which include a device with a variable antenna reflector orientation direction, based on use of primary information from gyroinertial sensors of spatial movement of mobile carriers of integrated radar OBSS, mounted thereon in a suitable manner. The invention discloses a method and a system for generating a direction-finding signal of a compensation signal for phase distortions of received signals reflected from an irradiated viewing object, with simultaneous inertial direction-finding and inertial autotracking thereof, which consists of a narrow-band loop 1 for inertial autotracking of a given viewing object and a broadband loop 2 for gyrostabilisation and control of the direction of the viewing vector. The system comprises an inertial discriminator 3 for direction-finding signals of a given viewing object, which includes a digital computer 4 and an integrated device.;EFFECT: providing high resolution of on-board self-guidance systems in real time when searching for a viewing object, high accuracy of direction-finding an irradiated viewing object and determining the coordinates of the irradiated viewing object relative to a mobile carrier, high noise-immunity of compensation signals for phase distortions of received signals caused by trajectory instability and elastic vibrations of the housing of the mobile carrier of an on-board self-guidance system.;2 cl, 9 dwg
机译:技术领域本发明涉及雷达,观察对象自动跟踪系统,移动载体自导系统,尤其是一次性载体,并且可以在主要雷达系统中使用,即在采用无线电波反射原理的系统中。以及与波长和波型无关的类似系统,以及具有高集成度的互连的雷达机载自导系统(OBSS),包括雷达和惯性自动跟踪系统,其中包括具有可变功能的设备基于来自陀螺惯性传感器的主要信息的天线反射器定向方向,该陀螺惯性传感器以合适的方式安装在其上的集成雷达OBSS的移动载波的空间运动。本发明公开了一种用于产生补偿信号的测向信号的方法和系统,该补偿信号用于对从被照射的观察对象反射的接收信号进行相位失真,同时进行惯性测向和惯性自动跟踪,该方法和系统包括窄带。回路1用于对给定观察对象进行惯性自动跟踪,而宽带回路2用于陀螺稳定和控制观察向量的方向。该系统包括用于给定观察对象的方向寻找信号的惯性鉴别器3,该惯性鉴别器3包括数字计算机4和集成设备。效果:当搜索目标时,实时提供高分辨率的机载自导系统。观察物体,对被照物体的方向进行定位和确定被照物体相对于移动载体的坐标的高精度,针对由轨迹的不稳定性和物体的弹性振动引起的接收信号相位失真的补偿信号的高抗扰性车载自引导系统的移动载体的外壳。; 2 cl,9 dwg

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