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Joint routing and channel assignment with switching interval maximization for cognitive radio networks

机译:认知无线电网络中具有切换间隔最大化的联合路由和信道分配

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In multi-hop cognitive radio networks (CRNs), channel switching and rerouting for a secondary user's (SU's) traffic flow protect the transmission of the primary users (PUs); however, due to the extra overhead and delay, they deteriorate the quality of the SU's transmission. In this paper, aiming to achieve a stable end-to-end delivery for a secondary flow, we study the problem of joint routing and channel assignment (JRCA), by exploiting the concept of expected switching interval (ESI). We first formulate the JRCA problem in a general setting without any constraint on the primary activity. Then, assuming Poisson arrival traffic for the PUs, we investigate the performance of the proposed scheme. Simulation results demonstrate that the proposed scheme enables a secondary flow on average to maintain a long end-to-end transmission time and thus reduces the risk of the flow being interrupted by the appearance of the PUs.
机译:在多跳认知无线电网络(CRN)中,辅助用户(SU)流量流的信道切换和重新路由可保护主要用户(PU)的传输;但是,由于额外的开销和延迟,它们会降低SU传输的质量。在本文中,为了实现二级流的稳定端到端传递,我们通过利用预期切换间隔(ESI)的概念研究联合路由和信道分配(JRCA)问题。我们首先在一般情况下制定JRCA问题,而对主要活动没有任何限制。然后,假设PU的泊松到达流量,我们调查所提出方案的性能。仿真结果表明,所提出的方案平均可使二次流保持较长的端到端传输时间,从而降低了由于PU的出现而中断流的风险。

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