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A successive transmission medium access scheme with dynamic contention window for VLC system with saturated traffic

机译:具有饱和流量的VLC系统的具有动态竞争窗口的连续传输媒体访问方案

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摘要

The visible light communication (VLC) network is usually relatively small scale and can provide high-data-rate information transmission, where multiple users get access to the network according to the carrier sense multiple access with collision avoidance (CSMA/CA) mechanism specified by IEEE 802.15.7 standard. In this paper, we propose a novel dynamic contention window with successive transmission (DCW-ST) scheme to improve the performance of this channel access mechanism and to achieve better network throughput without delay performance degradation. Specifically, we propose to adjust the contention window dynamically to adapt to the time-changing network size. Further, we derive the contention window size to achieve trade-off of throughput and delay, and the minimum contention window size required for the throughput enhancement. In addition, in order to further improve the delay performance, we present a successive transmission scheme that allows the nodes which have completed one transmission successfully to get the chance of transmitting information successively according to the network condition. Simulations are performed for the VLC system in saturated traffic and compared with the theoretical performances, which demonstrate that our proposed scheme outperforms the legacy CSMA/CA of IEEE 802.15.7.
机译:可见光通信(VLC)网络通常规模较小,并且可以提供高数据速率的信息传输,其中,多个用户根据由运营商指定的具有避免冲突的载波侦听多路访问(CSMA / CA)机制访问网络。 IEEE 802.15.7标准。在本文中,我们提出了一种新颖的具有连续传输的动态竞争窗口(DCW-ST)方案,以改善此信道访问机制的性能并实现更好的网络吞吐量,而不会降低性能。具体来说,我们建议动态调整竞争窗口,以适应随时间变化的网络规模。此外,我们导出竞争窗口大小以实现吞吐量和延迟之间的折衷,以及导出吞吐量增强所需的最小竞争窗口大小。另外,为了进一步提高延迟性能,我们提出了一种连续传输方案,该方案允许已成功完成一次传输的节点根据网络状况获得连续传输信息的机会。对VLC系统在饱和流量中进行了仿真,并与理论性能进行了比较,这表明我们提出的方案优于IEEE 802.15.7的传统CSMA / CA。

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