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Multimedia traffic transmission over TDMA shared Cognitive Radio networks with poissonian primary traffic

机译:通过TDMA共享认知无线电网络上的多媒体流量与泊松基本流量的传输

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Cognitive Radio networks are emerging as a new paradigm of communication and channels sharing in multimedia and wireless networks. In this paper, we consider multimedia traffic transmission over shared Cognitive Radio (CR) networks using fountain codes under different subchannel selection policies in a fading environment. We assume that the primary traffic arrival follows a Poisson process. To share this CR infrastructure, we propose to make use of the Time Division Multiple Access (TDMA) method, each secondary user (SU) is assigned one time slot where he transmits with a certain probability, the proposed model permits to this SU to transmits also in the remaining slots if he has data to transmit and has missed his own slot. Therefore, packets are not only lost by reason of Primary traffic interruptions, but also we consider losses caused by collisions between several SUs due to our specific time slot allocation. We evaluate the influence of the proposed model parameter settings on the secondary traffic transmission performance in view of the Spectral Efficiency. Numerical simulations show that the system still exhibit good secondary traffic efficiency despite of the presence of primary interferences and secondary collisions.
机译:认知无线电网络正在成为多媒体和无线网络中通信和信道共享的新范例。在本文中,我们考虑了在衰落环境中在不同子信道选择策略下使用喷泉码在共享认知无线电(CR)网络上进行多媒体流量传输的问题。我们假设主要流量到达遵循泊松过程。为了共享此CR基础结构,我们建议使用时分多址(TDMA)方法,为每个辅助用户(SU)分配一个时隙,以一定的概率进行传输,建议的模型允许该SU进行传输如果他有要传输的数据并且错过了自己的时隙,则在剩余的时隙中也是如此。因此,不仅由于主要业务中断而丢失分组,而且由于特定的时隙分配,我们还考虑了由于多个SU之间的冲突而引起的丢失。考虑到频谱效率,我们评估了建议的模型参数设置对次要交通传输性能的影响。数值模拟表明,尽管存在主要干扰和次要碰撞,该系统仍显示出良好的次要交通效率。

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