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An efficient quorum-based rendezvous scheme for multi-radio cognitive radio networks

机译:一种有效的基于仲裁的多无线电认知无线电网络交会方案

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Rendezvous is an initial and vital process for establishing data communications between devices in cognitive radio networks. Channel hopping (CH) provides an effective method for achieving rendezvous without relying on a dedicated common control channel. Most of the existing rendezvous schemes are designed for single-radio devices. Due to the dropping cost of wireless transceivers, the use of multiple radios to significantly reduce the rendezvous delay becomes economically feasible. In this paper, we propose a deterministic multi-radio rendezvous scheme that exploits the combinatorial features of grid quorum systems. We refer to our proposed scheme as multi-grid-quorum channel hopping (MGQ-CH). Our scheme uses multiple overlapped grid quorums to map the available channels at each device to its radios. We derive the theoretical upper-bound of the maximum time-to-rendezvous of MGQ-CH. Furthermore, we conduct simulations to study the performance of MGQ-CH under various system parameters and compare it with the state-of-the-art multi-radio rendezvous algorithms. The simulation results demonstrate the superior performance of MGQ-CH compared to previous schemes.
机译:集合是在认知无线电网络中的设备之间建立数据通信的初始且至关重要的过程。信道跳变(CH)提供了一种有效的方法,可以在不依赖于专用公共控制信道的情况下实现集合。现有的大多数会合方案都是为单无线电设备设计的。由于无线收发器的成本下降,因此使用多个无线电来显着减少集合点延迟在经济上变得可行。在本文中,我们提出了一种确定性的多无线电会合方案,该方案利用了网格仲裁系统的组合特征。我们将我们提出的方案称为多网格法定信道跳频(MGQ-CH)。我们的方案使用多个重叠的网格定额将每个设备上的可用信道映射到其无线电。我们推导了MGQ-CH的最大交会时间的理论上限。此外,我们进行仿真以研究MGQ-CH在各种系统参数下的性能,并将其与最新的多无线电交会算法进行比较。仿真结果表明,与以前的方案相比,MGQ-CH具有优越的性能。

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