Guaranteed service and delay-constrained capacity of a multi-channel cognitive secondary network

Yuehong Gao, Wenting Jiang, Yuming Jiang
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引用次数: 8

Abstract

In this paper, we consider a multi-channel cognitive radio system serving a primary network and a secondary network, and analyze the quality of service and delay-constrained capacity of the secondary network. Specifically, by assuming that a certain amount of resource is exclusively reserved and used on each channel by the primary network, we derive the traffic transportation capacity that is guaranteed to the secondary network. Based on this, we analyze the traffic delay distribution in the secondary network and derive an upper bound on it, which allows us to further obtain a guaranteed capacity of the secondary network in serving traffic with probabilistic delay requirement. Both numerical and simulation results are presented for an example where the secondary network traffic follows a model taken from 3GPP LTE. The delay distribution, average delay and delay-constrained capacity of the secondary network are compared. The excellent match between analytical results and simulation results validates the theoretical analysis.
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多通道认知二级网络的服务保障和时延约束容量
本文考虑了一种服务于主网和副网的多信道认知无线电系统,并分析了副网的服务质量和时延约束能力。具体来说,假设主网络在每条通道上独占保留和使用一定数量的资源,我们推导出保证给副网络的流量传输能力。在此基础上,分析了副网的流量延迟分布,并推导了其上界,进一步得到了副网在服务具有概率延迟要求的流量时的保证容量。文中给出了一个辅助网络流量遵循3GPP LTE模型的示例的数值和仿真结果。比较了二级网络的时延分布、平均时延和时延约束容量。分析结果与仿真结果吻合良好,验证了理论分析的正确性。
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