首页> 外文会议>Proceedings of the the Institute of Navigation 2007 national technical meeting (ION NTM 2007) >Test Results from a Novel Passive Bistatic GPS Radar Using a Phased Sensor Array
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Test Results from a Novel Passive Bistatic GPS Radar Using a Phased Sensor Array

机译:使用相控传感器阵列的新型无源双基地GPS雷达的测试结果

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GPS bistatic signals have applications for remote sensing in collecting data such as soil moisture content, surface altitude or wave speed. Prior research using these signals has been limited by the low signal power of the bistatic GPS signals. Leveraging off of a previous effort that used a 15-element array, NAVSYS Corporation has developed an advanced bistatic GPS receiver that uses a 109-element GPS antenna array and digital beam steering to provide gain to increase the ability to detect the weak bistatic GPS signals. The enhanced 109-element array offers 20 dB of gain over previous receivers, which use single element tracking and offers promise of retrieving usable return data from a much higher altitude. rnIn this paper, the design of the digital beam-steering receiver is described and data collected during flight tests with the array are presented. The data was collected with the antenna array installed on a Cessna aircraft. Flights were conducted over terrain and water and the data was recorded for post-test analysis. The results of the flight test show the increase in fidelity and observability of the bistatic GPS signals by using digital beam steering. The digital scanning capability of the receiver also increases the area of coverage over which data can be collected from a single aircraft pass. The enhanced data collected will be of benefit for all remote sensing applications using bistatic GPS signals.
机译:GPS双基地信号在收集诸如土壤水分含量,地表高度或波速等数据方面可用于遥感。使用这些信号的先前研究受到双基地GPS信号的低信号功率的限制。利用以前使用15个元素的阵列的努力,NAVSYS公司开发了一种先进的双基地GPS接收器,该接收机使用109元素的GPS天线阵列和数字波束控制来提供增益,以增强检测弱双基地GPS信号的能力。增强的109元素阵列比以前的接收器(使用单元素跟踪)提供了20 dB的增益,并有望从更高的高度检索可用的返回数据。在本文中,描述了数字波束转向接收机的设计,并介绍了使用该阵列进行飞行测试期间收集的数据。使用塞斯纳飞机上安装的天线阵列收集数据。在地形和水上进行飞行,并记录数据以进行测试后分析。飞行测试的结果表明,通过使用数字波束控制,双基地GPS信号的保真度和可观察性得到了提高。接收器的数字扫描能力还增加了覆盖范围,在该覆盖范围内可以从单个飞机通行证收集数据。收集到的增强数据对于使用双基地GPS信号的所有遥感应用都是有益的。

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