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Aeronautical telemetry using multiple-antenna transmitters

机译:使用多天线发射机的航空遥测

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The placement of multiple antennas on an air vehicle is one possible practice for overcoming signal obstruction created by vehicle maneuvering during air-to-ground transmission. Unfortunately, for vehicle attitudes where more than one of these antennas has a clear path to the receiving station, this practice also leads to self-interference nulls, resulting in dramatic degradation in the average signal integrity. This paper discusses application of unitary space-time codes such as the Alamouti transmit diversity scheme and unitary differential space-time codes to overcome the self-interference effect observed in such systems. The mathematical foundations of these techniques within the context of this application as well as computational performance gains associated with their implementation are provided. Issues such as the cost of channel estimation for trained techniques as well as the throughput performance of nondifferential and differential schemes for realistic air-vehicle motion are analyzed
机译:在飞行器上放置多个天线是一种克服在空对地传输过程中飞行器操纵所造成的信号障碍的可能做法。不幸的是,对于车辆姿态,其中多个天线中的一个以上具有通向接收站的清晰路径,这种做法还会导致自干扰无效,导致平均信号完整性急剧下降。本文讨论了诸如Alamouti发射分集方案和unit差分时空码之类的unit时空码的应用,以克服在此类系统中观察到的自干扰效应。提供了这些技术在本申请上下文中的数学基础,以及与实现相关的计算性能。分析了诸如训练有素的技术的信道估计成本以及用于实际车辆运动的非微分和微分方案的吞吐量性能等问题

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