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Signal design for multipath fading channels - Doppler and ISI barriers

机译:多径褪色通道的信号设计 - 多普勒和ISI障碍

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Signal design for digital communications in linear multipath fading channels is discussed. We define two extremes for the symbol rate in single-carrier systems, i.e., the Doppler barrier and the intersymbol interference (ISI) barrier and we note that it is difficult to go beyond these two barriers. The Doppler barrier is roughly equal to the Doppler spread #the channel. The ISI barrier is roughly equal to the inverse of the multipath spread of the channel. We use the time-frequency duality and show that above the ISI barrier it is advantageous to use frequency-multiplexed signals like orthogonal frequency division multiplexing (OFDM) signals, and below the Doppler barrier it is advantageous to use the corresponding time-multiplexed signals. An important parameter defining the measurability of the channel is the spread factor or the product of the Doppler spread and the multipath spread. Communications in overspread channels in which the spread factor is larger than unity is also discussed. All the results should be useful for system designers.
机译:讨论了线性多径衰落通道中数字通信的信号设计。我们为单载波系统中的符号速率定义两个极值,即多普勒屏障和符号间干扰(ISI)屏障,我们注意到很难超越这两个障碍。多普勒屏障大致等于多普勒展开#通道。 ISI屏障大致等于通道的多径传播的倒数。我们使用时频二元性,并表明在ISI屏障上方使用正交频分复用(OFDM)信号等频率多路复用信号是有利的,并且在多普勒屏障下方使用相应的时间复用信号是有利的。定义通道的可测量性的重要参数是多普勒扩散和多径传播的扩展因子或产品。还讨论了传播因子大于Unity的过涂层通道的通信。所有结果都应该对系统设计师有用。

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