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Adaptive Transmission Range Based on Event Detection for WSNs

机译:基于事件检测的无线传感器网络自适应传输范围

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Wireless sensor networks usually pay attention to energy efficiency by reducing the data transmission rate or using data aggregation techniques. However, in an urgent situation of a disaster monitoring application, sensing data become very important. The sensing data are required to be at the base station quickly so that the administrators can evaluate the situation and issue the early warning message. This paper focuses on the adaptive operations of sensor nodes. The sensor nodes can automatically adjust its transmission range based on the degree of importance of sensing data. In the urgent situation, the transmission range is increased to reduce the number of hops to reduce the latency. In the normal situation, the transmission range is decreased to reduce the battery consumption of sensor nodes. The proposed mechanism, called A-TRED, evaluates the degree of importance of sensing data and adjusts the transmission range of sensor nodes accordingly. A-TRED consists of three processes which are 1) data checking process, 2) packet formation process, and 3) packet forwarding process. The simulation results show that A-TRED can automatically adapt WSN key performance factors (e.g., latency, battery consumption) by adjusting the transmission range against the environmental changes.
机译:无线传感器网络通常通过降低数据传输速率或使用数据聚合技术来关注能效。但是,在灾害监视应用的紧急情况下,感测数据变得非常重要。传感数据需要快速到达基站,以便管理员可以评估情况并发出预警消息。本文着重于传感器节点的自适应操作。传感器节点可以根据传感数据的重要程度自动调整其传输范围。在紧急情况下,增加传输范围以减少跳数以减少等待时间。在正常情况下,传输范围会减小,以减少传感器节点的电池消耗。所提出的机制称为A-TRED,它评估传感数据的重要性程度并相应地调整传感器节点的传输范围。 A-TRED由三个过程组成:1)数据检查过程,2)数据包形成过程和3)数据包转发过程。仿真结果表明,A-TRED可以通过根据环境变化调整传输范围来自动调整WSN关键性能因素(例如,延迟,电池消耗)。

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