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Energy Collaboration for Non-Homogeneous Energy Harvesting in Cooperative Wireless Sensor Networks

机译:合作无线传感器网络中非均质能量收集的能量合作

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In wireless sensor networks, energy harvesting is developed as an effective way to solve energy drain problem of nodes which powered by battery, just like that cooperative communication is used to improve transmission reliability. In some energy harvesting networks, the nodes' energy harvested from ambient environment is disequilibrium. For example, nodes exposed to sunlight collect more solar energy than those shaded. Impoverished energy will reduce transmission reliability because some nodes have not enough energy to send data or are forced to decrease transmission power to save energy. In this paper, energy collaboration is taken into consideration for non-homogeneous energy harvesting in cooperative wireless sensor networks, where all sensor nodes harvest solar energy and then store it in rechargeable battery. And an energy cooperative protocol is proposed for energy inhomogeneity to enhance transmission reliability among relay nodes through radio frequency, where the nodes with abundant energy share excess power to other nodes which undertake the forwarding task but store insufficient energy. By exploiting ACK/NACK frame fed back from the destination node and No Enough Energy (NEE) frame advertised by the forwarding relays in the active set, each candidate node forms its energy supply set when all of them are lack of energy for transmitting. For the relay selection, three strategies are presented for choosing the pair of the best forwarding relay and the optimal energy supply relay, which are respectively named Best Channel Strategy, Nearest Distance Strategy and Minimum Energy Sharing Strategy. Furthermore, the outage probability of cooperative transmission under energy collaboration is derived. Simulation results show that energy collaboration for cooperative wireless sensor networks can significantly reduce the outage probability of the system and improve transmission reliability of the network.
机译:在无线传感器网络中,开发了能量收集作为解决由电池供电的节点的能量消耗问题的有效方法,就像这种协作通信用于改善传输可靠性。在一些能量收集网络中,从环境环境收获的节点的能量是不平衡的。例如,暴露于阳光的节点比那些阴影的太阳能收集更多的太阳能。贫困能量将降低传输可靠性,因为某些节点没有足够的能量来发送数据或被强制降低传输功率以节省能量。在本文中,考虑了在合作无线传感器网络中的非均匀能量收集的能量协作,所有传感器节点收获太阳能,然后将其存储在可充电电池中。并且提出了一种能量协同协议,以通过射频来提高继电器节点之间的传输可靠性,其中具有丰富能量的节点对承接转发任务的其他节点而且存储不足的能量。通过利用从目的节点反馈的ACK / NACK帧,并且在活动集中的转发继电器中没有足够的能量(NEE)帧,当所有这些都缺乏用于发送的能量时,每个候选节点都形成其能量供应。对于中继选择,提出了三种策略,用于选择一对最佳转发继电器和最佳能源供应继电器,分别命名为最佳信道策略,最近的距离策略和最小能量共享策略。此外,推导出能量协作下协同传输的停电概率。仿真结果表明,合作无线传感器网络的能量协作可以显着降低系统的停电概率,提高网络的传输可靠性。

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