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Clustering in cognitive radio for multimedia streaming over wireless Sensor networks

机译:认知无线电中的集群,用于通过无线传感器网络进行多媒体流

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Streaming over multimedia WSN (MWSN) in urban environment is challenging due to many issues among which spectrum scarcity and high radio interference. Such conditions make it difficult to ensure high bandwidth, low transmission delay and low packet losses required for real time multimedia streaming applications. In this paper, we propose COMUS a COgnitive radio solution for MUltimedia streaming over wireless Sensor networks which uses both cognitive radio technology and clustering mechanism to enhance spectrum and energy efficiency. In COMUS we consider clustering the MWSN nodes into different clusters to ensure low energy consumption. Furthermore, based on the nodes geographical position and the actual and the forecasted channel availability, we aim to ensure stable clusters forming. The multimedia streaming from a particular source node to the sink node, require a physical channel selection to perform the corresponding routing task. Thus, in COMUS we propose an efficient channel selection to prevent frequent channel switching which considers the PU (Primary User) activity forecasts. Our simulation results show that COMUS outperforms the two existing pioneering mechanisms called SEARCH and SCEEM and this in terms of providing higher video quality (PSNR and frame rate), lower end-to-end transmission delay and lower frame loss ratio under varied spectrum conditions.
机译:由于频谱稀缺和高无线电干扰等诸多问题,在城市环境中通过多媒体WSN(MWSN)进行流传输具有挑战性。这样的条件使得难以确保实时多媒体流传输应用所需的高带宽,低传输延迟和低分组丢失。在本文中,我们提出COMUS认知无线电解决方案,用于无线传感器网络上的多媒体流传输,该解决方案同时使用认知无线电技术和聚类机制来提高频谱和能效。在COMUS中,我们考虑将MWSN节点群集到不同的群集中,以确保低能耗。此外,基于节点的地理位置以及实际和预测的信道可用性,我们旨在确保稳定的集群形成。从特定源节点到宿节点的多媒体流需要进行物理信道选择才能执行相应的路由任务。因此,在COMUS中,我们提出了一种有效的信道选择,以防止考虑PU(主要用户)活动预测的频繁信道切换。我们的仿真结果表明,COMUS在提供更高的视频质量(PSNR和帧速率),更低的端到端传输延迟以及更低的帧丢失率(在不同的频谱条件下)方面,胜过了SEARCH和SCEEM这两个现有的先驱机制。

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