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Emulating co-channel interference in wireless networks using equivalent low-tap filters

机译:使用等效的低抽滤网模拟无线网络中的共信道干扰

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In emulating a multi-node wireless network, received interference can be represented by combining the multipath responses of the interfering links. Each multipath response can be described by a set of mean-squared amplitude of the multipath components and relative delays. The number of filter taps required per link to emulate the actual (‘true’) channel is a function of the channel bandwidth W and RMS delay spread τrms. Assuming each per-link channel to have an exponentially decaying power delay profile, this value is about 4Wτrms. We propose to emulate each link using n uniformly-spaced taps of equal mean-square gain. For this case, the required number of taps is only 2Wτrms, while maintaining the important characteristic (i.e., the CDF of total power, taken over the fading) of the true channel. We derive this result analytically and confirm it by simulation. Improving on this 50% reduction in required taps, we further show that the loss in accuracy is significantly low so long as the total number of taps is the order of 16 or more. For large values of Wτrms, this can lead to even more reduction in n and, thus, further limit the cost and complexity of emulators.
机译:在模拟多节点无线网络中,可以通过组合干扰链路的多径响应来表示接收的干扰。每个多径响应可以通过多径分量的一组平均平方幅度和相对延迟来描述。每个链路所需的滤波器抽头数量以模拟实际('真')通道是通道带宽w和rms延迟扩展τrms的函数。假设每个链路通道具有指数衰减的功率延迟配置文件,该值为4WτRMS。我们建议使用N均匀间隔的间隔的平均平均增益模拟每个链接。为此,所需的抽头数仅是2WτRMS,同时保持了真实信道的重要特征(即,通过衰落的总功率的CDF)。我们分析地派生了此结果并通过模拟确认。我们进一步改善了所需水龙头的50%减少,我们进一步表明,只要抽头总数为16以上,即长的准确度就明显低。对于WτRMS的大值,这可能导致N更低,因此进一步限制了仿真器的成本和复杂性。

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