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A Multi-Channel Algorithm for Antenna Diversity of SiriusXM High Band Satellite Reception in Vehicles

机译:车辆SiriusXM高频段卫星接收天线分集的多通道算法

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A new multi-channel algorithm for satellite digital audio radio services (SDARS) with scan-phase-antenna diversity at the SiriusXM high band is presented. Considering reception via four different satellite frequency bands simultaneously, the algorithm controls microwave phase shifters as well as switches of a diversity circuit in order to combine different antenna signals for a minimized overall bit error probability. On basis of a simple level detection, the in-phase and quadrature components are derived for all frequency bands and an overall bit error probability is estimated, which is minimized via the switching and phase constellation of the microwave diversity circuit. For the verification of the algorithm, antenna signals of a micro-diversity antenna set are received in real scenario test drives underneath dense foliage which are fed into a scan-phase diversity circuit. Even in unconventional antenna mounting positions the antenna diversity measurements with the novel multi-channel algorithm show a significant improvement of the reception quality in comparison to single antennas.
机译:提出了一种新的针对SiriusXM高频段具有扫描相位-天线分集的卫星数字音频无线电服务(SDARS)的多通道算法。考虑到同时通过四个不同的卫星频带进行接收,该算法控制微波移相器以及分集电路的开关,以便组合不同的天线信号,以使总的误码率最小。基于简单的电平检测,可以得出所有频带的同相和正交分量,并估算总体误码率,这可以通过微波分集电路的开关和相位星座图最小化。为了验证算法,在真实场景的测试驱动器中,在密集树叶下面接收微分集天线组的天线信号,这些信号被馈送到扫描相位分集电路中。即使在非常规的天线安装位置,与单天线相比,使用新颖的多通道算法进行的天线分集测量也显示出接收质量的显着改善。

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