基于帧聚合的IEEE 802.15.4e低功耗多跳SUN的研究

F. Kojima, H. Harada
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引用次数: 4

摘要

本文提出了一种低功耗多跳数据帧传输方案,以创建IEEE 802.15 TG4g/4e标准的长寿命智能公用事业网络(SUN)。在该方案中,采用具有关闭信标的低能量超框架结构来减少功率浪费,从而为每个设备提供有效的睡眠时间。此外,通过构建具有入出超帧的树形拓扑结构,可以很容易地实现多跳帧传输。此外,在该系统中,利用这种低能量的超框架结构,采用了有效的帧聚合技术,以解决严重降低SUN公用事业数据采集性能的瓶颈问题。计算机仿真结果证实,在可行的SUN使用情况下,该方案在无误差控制的情况下,帧成功率大于90%,同时保持小于0.4%的活跃周期率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A study on IEEE 802.15.4e compliant low-power multi-hop SUN with frame aggregation
This paper proposes a low-power multi-hop data frame transmission scheme to create a long-lived smart utility network (SUN), as standardized by IEEE 802.15 TG4g/4e. In the proposed scheme, low energy superframe structure with turned-off beacons are employed to reduce power wastage, thereby providing effective sleep periods for each device. Moreover, multi-hop frame transmission is easily realized by constructing a tree-shaped topology with incoming and outgoing superframes. Furthermore, in the proposed system, effective frame aggregation technology exploiting such low energy superframe structure is employed in order to solve the bottle neck problems that seriously degrade utility data collection performance in SUN. The results of computer simulations confirm that the proposed scheme enables a greater than 90% frame success rate without error control while holding a less than 0.4% active period ratio in feasible SUN usage situations.
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