Feng Weike, Friedt Jean-Michel, Cherniak Grigory, Sato Motoyuki
Graduate School of Environmental Studies, Tohoku University, Sendai, Japan.
Time and Frequency Department, FEMTO-ST, Besançon, France.
Rev Sci Instrum. 2018 Oct;89(10):104701. doi: 10.1063/1.5048132.
We investigate the use of low-cost digital video broadcasting-terrestrial (DVB-T) receivers as general-purpose software-defined radio (SDR) receivers for passive bistatic radar (PBR) applications. Two DVB-T receivers are synchronized using a common clock to perform coherent measurements. By exploiting the direct-path signal in the surveillance channel, we use the cross-correlation process to estimate the time offset between the data streams of reference and surveillance channels caused by the universal serial bus communication. We demonstrate the detection of static and moving targets as well as short-range targets, including a landing airplane at 8 km, multiple ships with different velocities, and vehicles within 20 m from the receiver acquiring at a 2 MHz bandwidth, by using Japan's Integrated Services Digital Broadcasting Terrestrial digital TeleVision (TV) signal broadcast. We also propose to improve the range resolution of the designed PBR system by combining multiple SDR receivers tuned to different carrier frequencies. The designed system and proposed method can be used for various applications, such as airplane navigation, harbor protection, and traffic density monitoring.
我们研究了将低成本地面数字视频广播(DVB-T)接收机用作无源双基地雷达(PBR)应用的通用软件定义无线电(SDR)接收机的情况。使用一个公共时钟对两台DVB-T接收机进行同步,以执行相干测量。通过利用监视信道中的直达路径信号,我们使用互相关处理来估计由通用串行总线通信导致的参考信道和监视信道数据流之间的时间偏移。我们通过使用日本的地面综合业务数字广播数字电视(TV)信号广播,展示了对静态和移动目标以及短程目标的检测,包括8公里外的一架着陆飞机、多艘不同速度的船只以及距离接收机20米以内的车辆,采集带宽为2兆赫兹。我们还提议通过组合调谐到不同载波频率的多个SDR接收机来提高所设计PBR系统的距离分辨率。所设计的系统和提议的方法可用于各种应用,如飞机导航、港口保护和交通密度监测。