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Channel reservation for dynamic spectrum access of cognitive radio networks with prioritized traffic

机译:具有优先业务量的认知无线电网络的动态频谱访问的信道预留

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摘要

In this paper, we propose a strategy to coordinate the dynamic spectrum access (DSA) of different types of traffic. It is assumed that the DSA assigns spectrum bands to three kinds of prioritized traffic, the traffic of the primary network, the Class 1 traffic and Class 2 traffic of the secondary network. Possessing the licensed spectrum, the primary traffic has the highest access priority and can access the spectrum bands at anytime. The secondary Class 1 traffic has higher priority compared to secondary Class 2 traffic. In this system, a channel reservation scheme is deployed to control spectrum access of the traffic. Specifically, the optimal number of reservation channels is applied to minimize the forced termination probability of the secondary traffic while satisfying a predefined blocking probability of the primary network. To investigate the system performance, we model state transitions of the DSA as a multi-dimensional Markov chain with three-state variables representing the number of primary, Class 1, and Class 2 packets in the system. Based on this chain, important performance measures, i.e., blocking probability and forced termination probability are derived for the Class 1 and Class 2 secondary traffic.
机译:在本文中,我们提出了一种策略来协调不同类型流量的动态频谱访问(DSA)。假设DSA将频谱带分配给三种优先级流量,即主网络流量,辅助网络的1类流量和2类流量。拥有许可频谱的主要流量具有最高的访问优先级,并且可以随时访问频谱带。与二级2级流量相比,二级1级流量具有更高的优先级。在该系统中,部署了一个信道预留方案来控制业务的频谱访问。具体地,应用最佳数量的预留信道以最小化辅助业务的强制终止概率,同时满足主网络的预定阻塞概率。为了研究系统性能,我们将DSA的状态转换建模为多维Markov链,其中的三个状态变量表示系统中主要,1类和2类数据包的数量。基于此链,得出了第1类和第2类次要流量的重要性能指标,即阻塞概率和强制终止概率。

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