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Orthogonal transmit diversity for self-interference suppression in multi-antenna telemetry links

机译:用于多天线遥测链路中自干扰抑制的正交发射分集

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One problem encountered in aeronautical telemetry is that during aircraft maneuvering, the transmission path is often obstructed by the air vehicle. Therefore, a second antenna is commonly placed on the aircraft to ensure a clear transmission path for all attitudes. However, when both antennas are in view of the receiver, this leads to an array interference pattern generally characterized by a large number of transmission s. Orthogonal transmit diversity schemes (space-time codes) can be used to overcome this interference without requiring additional bandwidth and with relatively straightforward implementation. In this paper, we illustrate how the Alamouti [see IEEE J. selected areas in communications, vol 16, p 1451-58, Oct 1998] and unitary differential space-time codes [see B. Hughes, IEEE Trans. information theory, vol 46, p 2567-78, Nov 2000] can be used for this application. Our transfer functions are equal to the SNR of a single antenna transmission system. Therefore this Alamouti scheme can completely remove the detrimental effects of the coherent interference created by the introduction of multiple antennas.
机译:航空遥测中遇到的一个问题是,在飞机操纵期间,飞行器经常阻碍传输路径。因此,通常在飞机上放置第二个天线,以确保所有姿态的传输路径畅通。然而,当两个天线都在接收器的视线范围内时,这导致通常以大量传输s为特征的阵列干扰图案。正交发射分集方案(时空码)可用于克服这种干扰,而无需额外的带宽,并且实现起来相对简单。在本文中,我们说明了Alamouti [请参阅IEEE J.通讯领域,第16卷,第1451-58页,1998年10月]和unit差分时空代码[请参阅B.Hughes,IEEE Trans。着。信息理论,第46卷,第2567-78页,2000年11月]可用于此应用程序。我们的传递函数等于单天线传输系统的SNR。因此,该Alamouti方案可以完全消除由于引入多个天线而产生的相干干扰的有害影响。

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