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DF versus AF: Energy consumption comparison for IEEE 802.15.4 networks

机译:DF与AF:IEEE 802.15.4网络的能耗比较

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IEEE 802.15.4 refers to a standard meant for short range wireless sensor networks (WSNs). Recently, the standard has gained huge popularity due to its simplicity, scalability, and low power consumption. In this paper, we investigate the energy efficiency of relay assisted dual hop communication between two 802.15.4 compliant wireless nodes. Novel energy consumption models for both amplify-and-forward (AF) and decode-and-forward (DF) selective relaying protocols have been formulated and energy efficiency of these two protocols have been assessed by comparing the respective energy requirement per successful bit transmission. Small scale fading introduces outage during transmission over 802.15.4 links. The results show that although under moderate to high channel outage probability, DF relaying offers better energy efficiency than AF relays, when the outage is low, their performances become identical. Next, variation of energy consumption with data payload size is elaborated for both DF and AF relays. It was found that, under moderate outage, there exists an optimum value for the payload size where energy saving is maximum. For similar channel conditions, the optimum payload size is more for DF relays. When the outage value is very high energy consumption increases exponentially with payload size. The trend reverses when the outage is low.
机译:IEEE 802.15.4是指旨在用于短距离无线传感器网络(WSN)的标准。最近,该标准由于其简单性,可伸缩性和低功耗而获得了巨大的普及。在本文中,我们研究了两个802.15.4兼容无线节点之间的中继辅助双跳通信的能效。制定了用于转发转发(AF)和解码转发(DF)选择性中继协议的新型能耗模型,并通过比较每个成功位传输的相应能量需求,评估了这两种协议的能量效率。小规模衰落会在通过802.15.4链路进行传输的过程中造成中断。结果表明,尽管在中等到较高的信道中断概率下,DF中继比AF中继提供更好的能量效率,但是当中断较低时,它们的性能将变得相同。接下来,阐述了DF和AF继电器的能耗随数据有效负载大小的变化。发现在适度中断的情况下,存在最大节能量的有效载荷大小的最佳值。对于相似的信道条件,DF中继的最佳有效负载大小更大。当中断值很高时,能耗随有效负载大小呈指数增长。当中断较低时,趋势将反转。

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