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首页> 外文期刊>Selected Areas in Communications, IEEE Journal on >Load-Balancing Spectrum Decision for Cognitive Radio Networks
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Load-Balancing Spectrum Decision for Cognitive Radio Networks

机译:认知无线电网络的负载均衡频谱决策

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摘要

In this paper, we present an analytical framework to design system parameters for load-balancing multiuser spectrum decision schemes in cognitive radio (CR) networks. Unlike the non-load-balancing methods that multiple secondary users may contend for the same channel, the considered load-balancing schemes can distribute the traffic loads of secondary users to multiple channels. Based on the preemptive resume priority (PRP) M/G/1 queueing theory, a spectrum decision analytical model is proposed to evaluate the effects of multiple interruptions from the primary user during each link connection, the sensing errors (i.e., missed detection and false alarm) of the secondary users, and the heterogeneous channel capacity. With the objective of minimizing the overall system time of the secondary users, we derive the optimal number of candidate channels and the optimal channel selection probability for the sensing-based and the probability-based spectrum decision schemes, respectively. We find that the probability-based scheme can yield a shorter overall system time compared to the sensing-based scheme when the traffic loads of the secondary users is light, whereas the sensing-based scheme performs better in the condition of heavy traffic loads. If the secondary users can intelligently adopt the best spectrum decision scheme according to sensing time and traffic conditions, the overall system time can be improved by 50% compared to the existing methods.
机译:在本文中,我们提出了一个分析框架,用于设计认知无线电(CR)网络中负载均衡多用户频谱决策方案的系统参数。与多个辅助用户可能争用同一通道的非负载平衡方法不同,考虑的负载平衡方案可以将辅助用户的流量负载分配到多个通道。基于抢先恢复优先级(PRP)M / G / 1排队理论,提出了一种频谱决策分析模型,用于评估每个链路连接期间主要用户多次中断,感知错误(即漏检和误报)的影响。二级用户)和异构通道容量。为了最小化次要用户的整体系统时间,我们分别得出了基于感测和基于概率的频谱决策方案的最佳候选信道数和最佳信道选择概率。我们发现,当次要用户的流量负载较轻时,基于概率的方案与基于感知的方案相比,可以产生更短的总体系统时间,而在交通繁忙的情况下,基于感知的方案则表现更好。如果二级用户可以根据感知时间和交通状况智能地采用最佳频谱决策方案,则与现有方法相比,整个系统时间可以缩短50%。

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