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Exploiting cognitive wireless nodes for priority‐based data communication in terrestrial sensor networks

机译:利用地面传感器网络中基于优先级的数据通信的认知无线节点

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A priority‐based data communication approach, developed by employing cognitive radio capacity for sensor nodes in a wireless terrestrial sensor network (TSN), has been proposed. Data sensed by a sensor node—an unlicensed user—were prioritized, taking sensed data importance into account. For data of equal priority, a first come first serve algorithm was used. Non‐preemptive priority scheduling was adopted, in order not to interrupt any ongoing transmissions. Licensed users used a nonpersistent, slotted, carrier sense multiple access (CSMA) technique, while unlicensed sensor nodes used a nonpersistent CSMA technique for lossless data transmission, in an energy‐restricted, TSN environment. Depending on the analytical model, the proposed wireless TSN environment was simulated using Riverbed software, and to analyze sensor network performance, delay, energy, and throughput parameters were examined. Evaluating the proposed approach showed that the average delay for sensed, high priority data was significantly reduced, indicating that maximum throughput had been achieved using wireless sensor nodes with cognitive radio capacity.
机译:已经提出了一种基于优先的数据通信方法,通过采用无线地面传感器网络(TSN)中的传感器节点的认知无线电容量开发。由传感器节点 - 未经许可的用户感测的数据是优先考虑的,考虑到感性数据。对于相等优先级的数据,使用第一个来第一个服务算法。采用非先发制优先级调度,以便不打断任何正在进行的传输。许可用户使用非驾驶员,开槽,载波侦听多址(CSMA)技术,而未经许可的传感器节点使用非持久的CSMA技术进行无损数据传输,在能量限制的TSN环境中。根据分析模型,使用河床软件模拟了所提出的无线TSN环境,并检查了传感器网络性能,延迟,能量和吞吐量参数。评估所提出的方法表明,感测的平均延迟,高优先级数据明显减少,表明使用具有认知无线电容量的无线传感器节点实现了最大吞吐量。

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