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On the Connectivity and Multihop Delay of Ad Hoc Cognitive Radio Networks

机译:Ad Hoc认知无线电网络的连接性和多跳延迟

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We analyze the multihop delay of ad hoc cognitive radio networks, where the transmission delay of each hop consists of the propagation delay and the waiting time for the availability of the communication channel (i.e. the occurrence of a spectrum opportunity at this hop). Using theories and techniques from continuum percolation and ergodicity, we establish the scaling law of the minimum multihop delay with respect to the source-destination distance in cognitive radio networks. When the propagation delay is negligible, we show the starkly different scaling behavior of the minimum multihop delay in instantaneously connected networks as compared to networks that are only intermittently connected due to scarcity of spectrum opportunities. Specifically, if the network is instantaneously connected, the minimum multihop delay is asymptotically independent of the distance; if the network is only intermittently connected, the minimum multihop delay scales linearly with the distance. When the propagation delay is nonnegligible but small, we show that although the scaling order is always linear, the scaling rate for an instantaneously connected network can be orders of magnitude smaller than the one for an intermittently connected network.
机译:我们分析了ad hoc认知无线电网络的多跳延迟,其中每跳的传输延迟包括传播延迟和通信信道可用性的等待时间(即在该跳处出现频谱机会)。利用连续渗流和遍历性的理论和技术,我们建立了认知无线电网络中最小多跳时延相对于源-目的距离的缩放定律。当传播延迟可忽略不计时,与由于频谱机会稀缺而仅间歇性连接的网络相比,我们显示了瞬时连接的网络中最小多跳延迟的截然不同的缩放行为。具体来说,如果网络是瞬时连接的,则最小多跳延迟就渐近地与距离无关;如果网络只是间歇性连接,则最小多跳延迟会随距离线性变化。当传播延迟不可忽略但很小时,我们表明尽管缩放比例始终是线性的,但瞬时连接网络的缩放比例可以比间歇连接网络的缩放比例小几个数量级。

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