Opportunistic and cooperative hybrid spectrum access protocol for cognitive radio network

Shubha Sharma, V. Bohara, Mansi Peer
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引用次数: 1

Abstract

This paper presents a hybrid opportunistic spectrum access (OSA) and cooperative spectrum sharing (CSS) protocol for cognitive radio networks. In the proposed protocol, secondary (i.e. cognitive) network (SN) switches its mode between OSA and CSS based on the state of primary network (PN). The activity status of PN is modeled as a two state discrete time Markov chain model in which steady state probabilities of PN are used to derive the outage probability of the hybrid system. Due to hybrid nature of the protocol, SN is always benefited since it can communicate either via OSA or CSS mode. In CSS mode, we analyze a two-phase hierarchical spectrum sharing protocol based on cooperative decode and forward relay transmission wherein it is assumed that the secondary system is equipped with multiple antennas. Closed form expressions for outage probability have been derived for both SN and PN. Through the theoretical and simulation results, the effect of network parameters, such as steady state probability of primary transmitter (PT), the distance between primary and secondary nodes, the transmit power at secondary transmitter (ST), has been shown on the performance of SN. The performance of the proposed scheme has also been validated by comparing it with conventional OSA. The numerical results show that the hybrid approach outperforms the conventional OSA.
认知无线网络的机会合作混合频谱接入协议
提出了一种用于认知无线网络的混合机会频谱接入(OSA)和合作频谱共享(CSS)协议。在该协议中,辅助(即认知)网络(SN)根据主网络(PN)的状态在OSA和CSS之间切换模式。将PN的活动状态建模为两态离散时间马尔可夫链模型,利用PN的稳态概率推导出混合系统的中断概率。由于协议的混合性质,SN总是受益的,因为它可以通过OSA或CSS模式进行通信。在CSS模式下,我们分析了一种基于协同解码和前向中继传输的两相分层频谱共享协议,其中假设二次系统配备了多个天线。导出了snn和PN的停电概率的封闭表达式。通过理论和仿真结果,揭示了主发射机稳态概率(PT)、主、次节点距离、次发射机发射功率(ST)等网络参数对SN性能的影响。通过与传统的OSA进行比较,验证了该方案的性能。数值结果表明,该方法优于传统的OSA方法。
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