无约束三维运动车辆多天线GNSS接收机跟踪算法

G. L. Puga, P. A. Roncagliolo, Javier G. García
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引用次数: 2

摘要

提出了一种用于GNSS GPS/GLONASS接收机的算法,该算法允许接收机在信号跟踪过程中无缝地组合来自多个天线的输入,以始终保持全天空能见度。该算法适用于航空和航天领域的各种具有不受约束的三维运动能力的飞行器,如高机动喷气式飞机、火箭、卫星、无人机等。本文提出的算法跟踪每个天线上接收到的信噪比(SNR)和载波相位。对于每一组相关值,接收机选择信噪比最佳的输入天线进行导航电文解码和测距。这种快速切换天线选择过程允许接收机与传入卫星信号保持同步,只要至少有一个天线在发射卫星的视线范围内。该算法将足够的天线分布在飞行器的整个机身上,确保接收器即使在旋转和姿态变化等三维机动过程中也不会失去与GNSS信号的同步。该算法在四天线GNSS接收机原型硬件上实现,并在GNSS信号模拟器上进行了测试。在这些测试中,多天线跟踪算法执行成功。本文给出了其中一些试验的结果。
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Multi-antenna GNSS receiver tracking algorithm for vehicles with unconstrained three-dimensional motion
An algorithm for GNSS GPS/GLONASS receivers is presented that allows the receiver to seamlessly combine the inputs from multiple antennas during signal tracking in order to keep full sky visibility at all times. This algorithm has applications for both aeronautical and space applications in all kinds of vehicles with unconstrained three-dimensional motion capabilities: high maneuverability jet aircraft, rockets, satellites, unmanned aerial vehicles (UAVs), etc. The algorithm presented here keeps track of the received signal-to-noise ratios (SNR) and carrier phase on each of the antennas. For each set of correlation values the receiver selects the input antenna with the best SNR in order to do navigation message decoding and ranging. This fast-switching antenna selection process allows the receiver to stay synchronized with the incoming satellite signal for as long as at least one of the antennas of the set is within line-of-sight of the transmitting satellite. Distributing enough antennas throughout the fuselage of a vehicle, this algorithm will ensure that the receiver does not lose synchronization with the GNSS signals even during three-dimensional maneuvers like spins and attitude changes. This algorithm was implemented on a four-antenna GNSS receiver prototype hardware, and tested using a GNSS signal simula-tor. During these tests the multi-antenna tracking algorithm performed successfully. The results of some of these tests are presented in this paper.
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