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Energy enhancement and efficient route selection mechanism using H-SWIPT for multi-hop IoT networks

机译:基于H-SWIPT的多跳物联网网络能量增强和高效路由选择机制

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摘要

Simultaneous wireless information and power transfer (SWIPT) is recently emerging as one of the vital solutions to prolong the lifetime of energy constrained wireless sensor nodes. However, current works on SWIPT considered only the immediate past-hop node's RF signal as a source of energy harvesting in multi-hop Internet of things (IoT) networks. In case of weak radio frequency (RF) signal, the amount of harvested energy does not support for continuous communication. Hence, in this paper a new energy harvesting mechanism is proposed which considers multiple sources (MS) such as (1) sink broadcasting energy, (2) co-channel interference, (3) neighbor nodes' RF signal, and (4) immediate past-hop node's RF signal for energy harvesting. Towards such prospect, a new SWIPT architecture is proposed called hybrid SWIPT (H-SWIPT) by integrating time switching (TS) and power splitting (PS) architectures. Furthermore, an efficient route selection mechanism is introduced to minimize the total energy consumption of the path based on an energy cost metric. To validate the proposed mechanism, simulation experiments are conducted and obtained the superiority of H-SWIPT compared with existing methods in terms of average harvested energy. Further, the effectiveness of proposed method performance is investigated through energy cost at different node density and barrier rates.
机译:同时无线信息和权力转移(SWIPT)最近成为一个延长的生命周期的重要解决方案能量受限的无线传感器节点。然而,目前只对SWIPT视为有效立即past-hop节点的射频信号源的能量收获种互联网(物联网)网络的东西。频率(RF)信号,收获的数量能量不支持连续沟通。收获机制提出了考虑多个来源(MS)如(1)下沉广播的能量,(2)同信道干扰,(3)邻居节点的射频信号,(4)立竿见影past-hop节点的射频信号能量收获。对这样的前景,一个新的SWIPT架构提出了被称为混合SWIPT (H-SWIPT)积分时间切换(TS)和权力分裂(PS)架构。介绍了高效的路由选择机制的总能源消耗降到最低基于能源成本指标的路径。建议的机制,模拟实验进行和获得的优越性吗H-SWIPT与现有方法相比而言平均收获能量。该方法性能的有效性通过能源成本在不同的调查节点密度和障碍率。

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