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Development of Smart Antenna Array Signal Processing Algorithm for Anti-Jam GPS Receiver

机译:抗堵塞GPS接收器智能天线阵列信号处理算法的研制

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GPS guidance uses low power signals from satellites which are 11000 NMI away. The satellite transmitter power is modest nearly 10W orders of magnitude. Neither satellite nor receivers have the luxury of very high antenna gain since both entities have significant field of view requirements. These factors result in a very low power density incident on a GPS receiver antenna. The signal received is generally 165 dB down than the thermal noise level. Such signals are notoriously easy to jam either by intentional noise sources (Jammer) or unintentionally from harmonics of broadcasting stations or other out of band sources. Here in this paper we will show how a nulling antenna or controlled reception pattern antenna with adaptive spatial filtering technique efficiently mitigate the intentional and non intentional interferences. A beamforming antenna array is a set of antennas whose outputs are weighted by complex values and combined to form the array output. The effect of the complex valued weights is to steer main lobes of the array pattern to desired directions. These directions may be unknown and so the antenna weights must be adjusted adaptively until some measure of array performance is improved, indicating proper lobe or null placement. An adaptive algorithm to adjust the complex weights of an antenna array is presented that nulls high power signals while allowing reception of GPS signals as long as the signals arrive from different directions.
机译:GPS导航使用从中有11000 NMI远的卫星低功率信号。该卫星的发射功率是适度的近10W数量级。无论是卫星接收机也具有非常高的天线增益的奢侈品,因为这两个实体的视需求显著场。这些因素导致非常低的功率密度入射在GPS接收器天线。接收的信号通常比热噪声电平165分贝下来。这样的信号是出了名容易堵塞或者通过故意的噪声源(干扰器)或无意地从广播站或其他带外源的谐波。在这里,在本文中,我们将显示一个零位天线或控制接收模式天线与自适应空间滤波技术如何有效减轻故意和非有意的干扰。波束形成天线阵列是一组天线,其输出由复值进行加权和组合,以形成所述阵列的输出。复值的权重的作用是操纵阵列图案的主瓣到所需方向。这些方向可以是未知的,并且因此天线权重,直到阵列的性能一定程度上得到改善,必须自适应地调整,指示正确波瓣或空位置。自适应算法来调整天线阵列的复权重被呈现的是空值的高功率信号,同时允许GPS信号的接收,只要该信号从不同方向到达。

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