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Laboratory performance assessment for DRM+ system in single and dual-antenna transmission scenarios

机译:在单天线和双天线传输方案中DRM +系统的实验室性能评估

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It has been shown that due to its smaller signal bandwidth (96 KHz), DRM+ signal could suffer from flat fading degradation at low receiver speeds, particularly in urban environments. To alleviate this problem, a simple transmit delay diversity (TDD) has been proposed in the standard. This paper tries to investigate this issue by presenting the performance results of multipath fading characterizations performed in the laboratory for DRM+ system. Both single and dual-antenna transmission scenarios have been considered. By using a sophisticated hardware channel simulator, different radio channel models corresponding to various scenarios and environments (urban, suburban, mountain, SFN, etc) could be tested and compared. For a single antenna scenario, the results show that indeed, at low receiver speeds (5 km/h), the DRM+ receiver was unable to cope with the effect of flat fading in the urban channel model. However, in the same environment, TDD scheme provides 3 dB gain over single antenna transmission if low or moderate correlation level is maintained between the two signal paths. Moreover, it has been found that for a TDD enhanced DRM+ system, a better performance is obtained with the SFN channel model as compared to urban and rural channels when the two signals are highly correlated.
机译:已经显示出,由于其较小的信号带宽(96 KHz),DRM +信号在低接收器速度下可能会出现平坦的衰落衰减,尤其是在城市环境中。为了减轻这个问题,在标准中已经提出了简单的传输延迟分集(TDD)。本文试图通过提出在实验室中针对DRM +系统进行的多径衰落表征的性能结果来研究此问题。已经考虑了单天线和双天线传输方案。通过使用复杂的硬件信道模拟器,可以测试和比较与各种场景和环境(城市,郊区,山区,SFN等)相对应的不同无线电信道模型。对于单天线情况,结果表明,确实,在低接收器速度(5 km / h)下,DRM +接收器无法应对城市信道模型中平坦衰落的影响。然而,在相同的环境中,如果在两个信号路径之间保持低或中等的相关水平,TDD方案将比单天线传输提供3 dB的增益。此外,已经发现,对于TDD增强型DRM +系统,当两个信号高度相关时,与城市和乡村信道相比,SFN信道模型可以获得更好的性能。

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