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首页> 外文期刊>International Journal of Microwave and Wireless Technologies >Automotive antenna diversity system for satellite radio with high phase accuracy in low SNR-scenarios
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Automotive antenna diversity system for satellite radio with high phase accuracy in low SNR-scenarios

机译:在低SNR情况下具有高相位精度的用于卫星无线电的汽车天线分集系统

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摘要

For a fast scan-phase satellite radio antenna diversity system a noise correction method is presented for a significant improvement of audio availability at low signal-to-noise ratio (SNR) conditions. An error analysis of the level and phase detection within the diversity system in the presence of noise leads to a correction method based on a priori knowledge of the system's noise floor. This method is described and applied in a hardware example of a satellite digital audio radio services antenna diversity circuit for fast fading conditions. Test drives, which have been performed in real fading scenarios, are described and results are analyzed statistically. Simulations of the scan-phase antenna diversity system show higher signal amplitudes and availabilities. Measurement results of dislocated antennas as well as of a diversity antenna set on a single mounting position are presented. A comparison of a diversity system with noise correction, the same system without noise correction, and a single antenna system with each other is performed. Using this new method in fast multipath fading driving scenarios underneath dense foliage with a low SNR of the antenna signals, a reduction in audio mute time by one order of magnitude compared with single antenna systems is achieved with the diversity system.
机译:对于快速扫描相位卫星无线电天线分集系统,提出了一种噪声校正方法,可在低信噪比(SNR)条件下显着改善音频可用性。在存在噪声的情况下对分集系统内的电平和相位检测进行误差分析,会导致基于对系统本底噪声的先验知识的校正方法。在快速衰落条件下,在卫星数字音频无线电服务天线分集电路的硬件示例中描述并应用了此方法。描述了在真实衰落场景中执行的测试驱动,并对结果进行了统计分析。扫描相位天线分集系统的仿真显示出更高的信号幅度和可用性。给出了在单个安装位置上错位天线以及分集天线的测量结果。进行了具有噪声校正的分集系统,没有噪声校正的相同系统以及单个天线系统之间的比较。在密集的树叶下,天线信号的SNR低的情况下,在快速多径衰落驱动场景中使用此新方法,与分集系统相比,与单天线系统相比,音频静音时间减少了一个数量级。

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