首页> 外国专利> METHOD FOR DETERMINING PROTECTIVE ammunition BE START AND STARTING POINTS AND SAP AND DEVICE FOR ITS IMPLEMENTATION

METHOD FOR DETERMINING PROTECTIVE ammunition BE START AND STARTING POINTS AND SAP AND DEVICE FOR ITS IMPLEMENTATION

机译:确定起步保护点的方法,起步点和实施的SAP及设备

摘要

FIELD: physics, navigation.;SUBSTANCE: group of inventions relates to radio engineering. The method includes determining defensive ordnances to be launched, launch and detonation time thereof, ordnances integrated with a radar station after detecting and determining the moment the radar station detects a signal at differential frequency Fdo=2Vofn/C, where fn is frequency of the emitted chirp signal, Vo and C denote the velocity of the last third defensive ordnance and the speed of light, corresponding to the launch time of the last defensive ordnance to the third deflection point closest to the radar station, wherein the radar station first determines the time of onset of signals at differential frequencies (N+4)Fdo and NFdo, when the target is located at (Do/Vo)[Vi+(N+4)Vo] and (Do/Vo)(Vi+NVo) from the receiving-transmitting antenna of the radar station, respectively, where N is a positive number, Vi is the radial velocity of the target, Do is the distance from the receiving-transmitting antenna of the radar station to the third deflection point, selected based on the condition Do/Vo=fn/Fmfd, where fd and Fm denote frequency deviation and modulation frequency of the chirp signal; determining the time of onset of signals at differential frequencies (N+4)Fdo and AFdo, when the target is located at (Do/Vo)[Vi+(N+4)Vo] and (Do/Vo)(Vi+AVo) from the receiving-transmitting antenna of the radar station, respectively, where A is a positive number considerably less than N, and measuring first the time interval t between the onset of signals at differential frequencies (N+4)Fdo and NFdo, then, in accordance with the duration of the time interval t, selecting two values from a plurality of predetermined values: Di=(Do/Vo)(Vi+NVo) - range and (Vi+Vp1) - sum of velocities, where Vp1 is the velocity of the first defensive ordnance, and calculating the relationship t1=Di/(Vi+Vp1), which determines the time between the launch of the first defensive ordnance when the target is located at a distance of (Do/Vo)(Vi+NVo) from the receiving-transmitting antenna of the radar station and the time of detonation of the first defensive ordnance, when the ordnance is located at a deflection point furthest from the radar station - point of meeting the target, and then measuring the time interval t2 between the onset of signals at differential frequencies (A+4)Fdo and AFdo, then, in accordance with the duration of the measured time interval t2, selecting two values from a plurality of predetermined values: Di=(Do/Vo)(Vi+AVo) and (Vi+Vp2), where Vp2 is the velocity of the next second defensive ordnance, and calculating the relationship t3=Di/(Vi+Vp2), which determines the time between the launch of the second defensive ordnance when the target is located at a distance (Do/Vo)(Vi+AVo) from the receiving-transmitting antenna of the radar station and the time of detonation of the second defensive ordnance, when the ordnance is located at a second deflection point closer to the radar station. The apparatus for determining defensive ordnance to be launched and the launch and detonation time thereof includes: an antenna, a chirp signal transmitter, a mixer, a differential frequency filter, a narrow-band signal detector, a shift register, two AND elements, an OR element, two delay elements, two pulse counters, a count pulse generator, two divider circuits, four read-only memory devices and two time switches.;EFFECT: high effectiveness of protecting objects, which is achieved owing to use of multiple classes of defensive ordnances, each fired at the right time and detonating at a defined deflection point.;2 cl, 1 dwg
机译:领域:物理,导航;实质:一组与无线电工程有关的发明。该方法包括确定要发射的防御性军械,其发射和引爆时间,在检测并确定雷达站以差频Fdo = 2Vofn / C检测到信号的时刻之后与雷达站集成的军械,其中fn是发射的频率线性调频信号Vo和C表示最后第三道防御弹药的速度和光速,对应于最后一道防御弹药向最靠近雷达站的第三偏转点的发射时间,其中雷达站首先确定时间当目标位于接收端的(Do / Vo)[Vi +(N + 4)Vo]和(Do / Vo)(Vi + NVo)处时,在差分频率(N + 4)Fdo和NFdo处的信号出现的时间雷达站的发射天线,其中N是正数,Vi是目标的径向速度,Do是从雷达站的发射天线到第三偏转点的距离,根据骗局方向Do / Vo = fn / Fmfd,其中fd和Fm表示线性调频信号的频率偏差和调制频率;当目标位于(Do / Vo)[Vi +(N + 4)Vo]和(Do / Vo)(Vi + AVo)时,确定信号在不同频率(N + 4)Fdo和AFdo处的开始时间分别从雷达站的接收发射天线接收信号,其中A是一个明显小于N的正数,并首先测量差分频率(N + 4)Fdo和NFdo信号开始之间的时间间隔t,然后,根据时间间隔t的持续时间,从多个预定值中选择两个值:Di =(Do / Vo)(Vi + NVo)-范围和(Vi + Vp 1 )-速度总和,其中Vp 1 是第一个防御军械的速度,并计算关系t 1 = Di /(Vi + Vp 1 ),确定目标位于距雷达站的接收发射天线(Do / Vo)(Vi + NVo)的距离与引爆时间之间的时间。第一个防御军械,当弹药位于离雷达站最远的偏转点-达到目标的点,然后测量以不同频率(A + 4)Fdo发射信号之间的时间间隔t 2 然后,根据测得的时间间隔t 2 的持续时间,从多个预定值中选择两个值:Di =(Do / Vo)(Vi + AVo)和(Vi + Vp 2 ),其中Vp 2 是下一个第二防御工事的速度,并计算关系t 3 = Di /(Vi + Vp 2 ),它确定目标位于与目标发射接收天线相距(Do / Vo)(Vi + AVo)的距离时第二次发射防御弹药的时间。军械位于更靠近雷达站的第二偏转点时,第二军械的爆炸时间。确定要发射的防御弹药的装置及其发射和引爆时间包括:天线,线性调频信号发射机,混频器,差分频率滤波器,窄带信号检测器,移位寄存器,两个“与”元件, OR元件,两个延迟元件,两个脉冲计数器,一个计数脉冲发生器,两个分频器电路,四个只读存储设备和两个时间开关。效果:由于使用了多种类别的保护装置,因此实现了高效的物体保护防御弹药,每支都在正确的时间发射并在定义的偏转点处引爆。; 2 cl,1 dwg

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