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Energy-Efficient Receiver-Driven Wireless Mesh Sensor Networks

机译:高能效接收器驱动的无线网状传感器网络

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摘要

A major challenge in wireless sensor networks research is energy efficiency. In the intermittent receiver-driven data transmission (IRDT) protocol, which aims at saving energy, communication between two nodes commences when multiple receiver nodes transmit their own IDs and the sender nodes receive them. This protocol can be used to construct a mesh network which is robust against node failure and wireless channel fluctuations. In our work, we improve this protocol by implementing a collision avoidance method for control packets. First, we refer to the probability of control packet collision as a function of the intermittent interval. We then introduce procedures to determine the interval which decreases or minimizes this probability. Afterwards, we include a data aggregation mechanism into IRDT to reduce data transmission frequency and the occurrence of control packet collisions. Through computer simulation, we show that IRDT can offer greater reduction of the average energy consumption compared with RI-MAC and X-MAC, especially at small loads, and we also demonstrate that IRDT with collision avoidance for control packets can attain higher performance than the original IRDT. This method ensures a packet collection ratio of more than 99% and an average energy consumption 38% lower than that of EA-ALPL and 90% lower than that of the original IRDT.
机译:无线传感器网络研究的主要挑战是能源效率。在旨在节省能源的间歇性接收器驱动的数据传输(IRDT)协议中,当多个接收器节点发送自己的ID,而发送者节点接收它们时,两个节点之间的通信开始。该协议可用于构建对节点故障和无线信道波动具有鲁棒性的网状网络。在我们的工作中,我们通过对控制数据包实施冲突避免方法来改进此协议。首先,我们将控制数据包冲突的概率称为间歇间隔的函数。然后,我们介绍确定减小或最小化此概率的间隔的过程。之后,我们在IRDT中加入了一种数据聚合机制,以减少数据传输频率和控制数据包冲突的发生。通过计算机仿真,我们发现与RI-MAC和X-MAC相比,IRDT可以提供更大的平均能耗降低,尤其是在小负载下,并且我们还证明了具有避免冲突的控制包的IRDT可以实现比RI-MAC和X-MAC更高的性能。原始IRDT。这种方法可确保数据包收集率超过99%,平均能耗比EA-ALPL低38%,比原始IRDT低90%。

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