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AIRBORNE GPS GUIDANCE SYSTEM FOR DEFEATING MULTIPLE JAMMERS

机译:削弱多个干扰物的机载GPS制导系统

摘要

A missile guidance system designed to operate on GPS signals in an anti-jamming environment. The inventive system includes first, second and third airborne vehicles (20). A GPS receiver (24) is mounted on each of the three vehicles (20) to receive signals transmitted from spaceborne satellites (14). Each vehicle (20) acts as a pseudo-satellite or "pseudolite". The received GPS signals are processed by a processor (26) to provide a first intermediate signal indicating the position of the vehicle (20). This signal is retransmitted from each vehicle and received by a GPS receiver mounted on a missile. The received intermediate signal is processed on the missile to provide an output signal indicating the position thereof. The pseudolites would be airborne in the vicinity of a target area. Because the pseudolites are relatively close to the targets compared to a satellite in high altitude orbit and because the pseudolites would be able to transmit a kilowatt or more power, the signal strength may be improved significantly. To succeed as a jammer, a jammer, successful against GPS satellites, would need considerably more power to succeed against aircraft carried pseudolites. The pseudolite system delivers GPS signals into the target area 40-70 dB stronger than signals coming directly from GPS satellites. By timing the signals for 100 % time coverage, enemy C/A code receivers will be jammed because they are limited to a J/S capability of 30 dB.
机译:一种设计用于在抗干扰环境中对GPS信号进行操作的导弹制导系统。本发明的系统包括第一,第二和第三空中交通工具(20)。 GPS接收器(24)安装在三个车辆(20)的每一个上,以接收从星载卫星(14)发射的信号。每个飞行器(20)充当伪卫星或“伪卫星”。所接收的GPS信号由处理器(26)处理以提供指示车辆(20)的位置的第一中间信号。该信号从每辆车重新发送,并由安装在导弹上的GPS接收器接收。接收到的中间信号在导弹上进行处理,以提供指示其位置的输出信号。伪卫星将空降在目标区域附近。由于伪卫星与高海拔轨道的卫星相比,相对较接近目标,并且由于伪卫星将能够发送千瓦或更多的功率,因此信号强度可能会大大提高。为了成功成为干扰机,成功对抗GPS卫星的干扰机需要更大的功率才能成功抵御航空伪卫星。伪卫星系统将GPS信号传送到比直接来自GPS卫星的信号强40-70 dB的目标区域。通过对信号进行100%时间覆盖的定时,敌对的C / A代码接收器将受到干扰,因为它们的J / S能力限于30 dB。

著录项

  • 公开/公告号WO9961933A3

    专利类型

  • 公开/公告日2000-02-24

    原文格式PDF

  • 申请/专利权人 RAYTHEON COMPANY;

    申请/专利号WO1999US08139

  • 发明设计人 SCHNEIDER ARTHUR J.;SMALL JAMES G.;

    申请日1999-04-14

  • 分类号G01S5/14;F41G7/34;

  • 国家 WO

  • 入库时间 2022-08-22 01:48:56

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