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Research of High Sensitivity GPS Receiver Anti-jamming Using LCMV and Minimum Norm Algorithms Based on Circular Antenna Array

机译:基于圆形天线阵列的LCMV和最小规范算法高灵敏度GPS接收机抗干扰研究

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A jammer is an intentional or unintentional signal that directly interferes within the LI or L2 frequency bands. GPS signal which reaches the receiver is below the thermal noise power by about 30 dB When the signal is masked by foliage or other man-made obstructions, the power of GPS signal is attenuated and comes to be even weaker. Although the GPS uses DSSS technique, it is vulnerable to high power jammers like CW, FM, pulse, and noise. Adaptive antenna is suitable to be used to cancel these types of jammers, and it utilizes the technique of cancellation based on determining the jammer directions like MUSIC algorithm or PL The main purpose of adaptive antenna is to reduce the jammer signals up to a certain level so that the spread spectrum mechanism can extract the signals.As high sensitivity GPS uses weak signals, the jammer-to-signal ratio will be higher for the weaker signals and interference. It may cause loss of signal tracking or large measurement errors. In this sense, the main objective of this paper is to study the effect of low power GPS signal anti-jamming. In the present paper, a new model for suppressing jammers to the high sensitivity GPS receiver is proposed. Minimum norm algorithm can assign a deep null blindly to the jammers' incident direction, and it also doesn't introduce any false nulls like other algorithms do.
机译:干扰器是一种有意或无意的信号,可直接干扰LI或L2频带。当通过叶片或其他人造障碍物掩盖时,到达接收器的GPS信号低于热噪声功率约为30 dB,GPS信号的功率衰减并达到较弱。虽然GPS使用DSSS技术,但它很容易受到CW,FM,脉冲和噪声等高功率干扰物。自适应天线适用于取消这些类型的干扰器,并且它利用基于测定音乐算法或PL等动音方向的取消技术,自适应天线的主要目的是将干扰声信号降低到一定水平扩频机制可以提取信号。高灵敏度GPS使用弱信号,对于较弱的信号和干扰,干扰对信号比率将更高。它可能导致信号跟踪或大的测量误差丢失。从这个意义上讲,本文的主要目的是研究低功率GPS信号抗干扰的影响。在本文中,提出了一种用于抑制与高灵敏度GPS接收器的干扰器的新模型。最小规范算法可以盲目地为干扰器的入射方向分配深度空,并且它也不会引入像其他算法一样的任何错误空缺。

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