Achievable throughput in relay-powered RF harvesting cooperative sensor networks

Deepak Mishra, S. De
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引用次数: 1

Abstract

Aiming at uninterrupted sensor network, we consider a radio frequency (RF) harvesting cooperative communication scenario, where the field nodes (information sources) are powered by RF energy transfer (RFET) from a relay. The relay node can be either connected to the power grid or positioned at some ambient energy harvesting favorable location for the desired energy supply. To further reduce the field nodes' energy consumption, the relay node decodes-and-forwards the field data to the information sink in a two-hop half-duplex fashion. In the relay-powered cooperative network (RPCN), we derive closed form expressions of the ergodic capacity and achievable throughput for each source-destination pair. Achievable sum-throughput as a function of different system parameters, e.g., RFET time, RF-to-DC conversion efficiency, relay location, channel conditions, and relay transmit power is numerically evaluated. Significant throughput performance improvement in RPCN over conventional RF-powered communication networks is observed.
中继供电射频采集协同传感器网络中可实现的吞吐量
针对不间断传感器网络,我们考虑了一种射频(RF)采集协作通信方案,其中现场节点(信息源)由继电器的射频能量传输(RFET)供电。所述中继节点可以连接到电网或位于对所述能量供应有利的环境能量收集位置。为了进一步降低现场节点的能量消耗,中继节点以两跳半双工的方式解码并转发现场数据到信息接收器。在中继供电的合作网络(RPCN)中,我们导出了每个源-目的对的遍历容量和可实现吞吐量的封闭表达式。可实现的总吞吐量作为不同系统参数的函数,例如,RFET时间,RF-to-DC转换效率,继电器位置,信道条件和继电器发射功率进行数值评估。与传统的射频通信网络相比,RPCN显著提高了吞吐量性能。
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