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

机译:抗干扰GPS接收机智能天线阵列信号处理算法的开发

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摘要

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导航使用距NMI 11000的卫星的低功率信号。卫星发射机的功率适中,接近10W数量级。卫星和接收器都无法获得很高的天线增益,因为这两个实体都具有相当大的视野要求。这些因素导致入射到GPS接收器天线上的功率密度非常低。接收到的信号通常比热噪声电平低165 dB。众所周知,此类信号很容易被人为噪声源(Jammer)阻塞,或者无意地由广播电台的谐波或其他带外源的谐波阻塞。在本文中,我们将展示采用自适应空间滤波技术的调零天线或受控接收模式天线如何有效地缓解有意和无意干扰。波束成形天线阵列是一组天线,其输出由复数值加权并组合以形成阵列输出。复数值权重的作用是将阵列模式的主瓣转向所需的方向。这些方向可能是未知的,因此必须自适应地调整天线权重,直到对阵列性能进行某种程度的测量为止,这表明正确的波瓣或零位放置。提出了一种调整天线阵列的复杂权重的自适应算法,该算法可以使大功率信号归零,同时只要信号来自不同方向,就可以接收GPS信号。

著录项

  • 来源
  • 会议地点 Hangzhou(CN);Hangzhou(CN)
  • 作者

    Anindya Kundu; Soham Ghosh;

  • 作者单位

    Kalpana Chawla Space Technology Cell (KCSTC) Department of Electronics and Electrical Communication Engineering Indian Institute of Technology,Kharagpur 721 302,West Bengal,India;

    Department of Electronics Communication Engineering (ECE) Netaji Subhash Engineering College,Kolkata 700152,West Bengal,India;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 电磁学;
  • 关键词

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