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Cross-layer resource allocation for video streaming over OFDMA cognitive radio networks with imperfect cross-link CSI

机译:用于视频流的跨层资源分配在ofdma认知无线电网络上具有不完美的交叉链接CSI

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In this paper, novel cross-layer radio resource allocation (RRA) algorithm is proposed in the context of Orthogonal frequency division multiple access (OFDMA)-based cognitive radio (CR) video application systems. User video quality and channel awareness are incorporated in the design, to exploit joint optimization of rate and power for secondary receivers (SRs), subject to minimum SR video quality and primary receiver (PR) interference threshold constraints. Firstly, the relationship between PR interference margin and power limits at the secondary transmitter (ST) is analytically derived. Then, to provide PRs with satisfactory quality of service (QoS), we propose a new probabilistic approach to mitigate the total imposed interference of the ST on PRs, considering imperfect ST to PR channel state information (CSI). The effect of PR interference limit violation probability, interference threshold, and error variance of imperfect CSI are evaluated using computer simulations. Results indicate that significant improvement in SR total video quality is achieved through our proposed algorithm over other state-of-the-art Non-Quality-Aware (NQA) designs in the literature. The enhanced performance was obtained whilst guaranteeing SR minimum quality and PR prescribed QoS constraints.
机译:本文在正交频分多址(OFDMA)的认知无线电(CR)视频应用系统的上下文中提出了新的跨层无线资源分配(RRA)算法。用户视频质量和频道意识在设计中并入,利用二次接收器(SRS)的速率和功率的联合优化,但经过最小SR视频质量和主接收器(PR)干扰阈值约束。首先,分析辅助发射器(ST)的PR干扰裕度和功率限制之间的关系。然后,为了提供具有令人满意的服务质量(QoS)的PRS,我们提出了一种新的概率方法来减轻ST对PRS对PR通道状态信息(CSI)的总施加的概率干扰。使用计算机仿真评估PR干扰极限违规概率,干扰阈值和误差阈值和误差方差的效果。结果表明,通过我们在文献中的其他最先进的非质量感知(NQA)设计的算法,通过我们所提出的算法实现了SR总视频质量的显着改善。获得增强的性能,同时保证SR最小质量和PR规定的QoS限制。

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