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TDM framing for gap filler operation in satellite digital multimedia broadcasting System A

机译:TDM帧用于卫星数字多媒体广播系统A中的填空操作

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A new satellite digital multimedia broadcasting system is proposed which deploys an additional time division multiplexing (TDM) signal path for gap filler operation over System A. All orthogonal frequency division multiplexing (OFDM) ensembles of System A are multiplexed into one TDM frame with some header information. The OFDM frame boundary is used for the reference of TDM framing. This TDM frame is encoded, interleaved, and modulated once more. Both multiple OFDM signals and one TDM signal are transmitted through separate frequency bands. The proposed system can configure an efficient and flexible complementary terrestrial gap filler system by introducing a mode conversion gap filler which receives the TDM signal through Ku-band and transmits multiple OFDM signals through S-band. This proposed gap filler does not have an oscillation problem inherently and does not degrade the signal quality. It is shown that it is recommended to deploy a large number of gap fillers with low gain power amplifiers rather than a small number of gap fillers with high gain power amplifiers.
机译:提出了一种新的卫星数字多媒体广播系统,该系统将额外的时分多路复用(TDM)信号路径部署到系统A上的间隙填充操作中。系统A的所有正交频分多路复用(OFDM)集合都被复用到一个带有某些报头的TDM帧中信息。 OFDM帧边界用于TDM成帧的参考。再次对该TDM帧进行编码,交织和调制。多个OFDM信号和一个TDM信号均通过单独的频带发送。所提出的系统可以通过引入模式转换间隙填充器来配置高效且灵活的地面互补间隙填充器系统,该模式转换间隙填充器通过Ku频带接收TDM信号并通过S频带发送多个OFDM信号。所提出的间隙填充物固有地不存在振荡问题并且不会降低信号质量。结果表明,建议在低增益功率放大器中部署大量的间隙填充物,而不是在高增益功率放大器中部署少量的间隙填充物。

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