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Traffic-Aware and Energy-Efficient Routing Algorithm for Wireless Sensor Networks

机译:无线传感器网络中的流量感知和节能路由算法

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摘要

The energy of wireless sensor networks (WSNs) is generally powered by limited and portable batteries. However, there are some specific scenarios where the nodes can gain energy continuously, such as the electric energy data collection, the power line monitoring and using renewable energy. Meanwhile, due to the centralized traffic pattern in WSNs, congestion occurs easily and has a negative impact on the network performance, namely, decreasing throughput and increasing energy consumption. In this paper, a solution to sufficiently maintain the energy efficiency and avoid congestion for energy-unlimited WSNs is presented. Based on the similarity between data forwarding in WSNs and water transmission in pipeline, a traffic-aware and energy-efficient routing (TER) algorithm is proposed. The TER algorithm is designed by constructing a pipeline model in terms of physical distance and traffic load. The goal of this basic approach is to force the packets to steer clear of obstacles created by congestion and eventually move toward the sink. The simulation results show that the proposed solution generates better performance in terms of the global energy consumption , timeliness and reliability as compared to the other two algorithms.
机译:无线传感器网络(WSN)的能量通常由有限的便携式电池供电。但是,在某些特定情况下,节点可以连续获取能量,例如电能数据收集,电力线监控和使用可再生能源。同时,由于WSN中的集中流量模式,拥塞很容易发生,并且对网络性能产生负面影响,即降低吞吐量和增加能耗。在本文中,提出了一种解决方案,该解决方案可充分保持能量效率并避免能量无限的WSN的拥塞。基于无线传感器网络中数据转发与管道输水之间的相似性,提出了一种流量感知和节能路由算法。 TER算法是通过构建基于物理距离和流量负载的管道模型来设计的。这种基本方法的目标是迫使数据包避开拥塞造成的障碍,并最终移向接收器。仿真结果表明,与其他两种算法相比,该方案在全局能耗,及时性和可靠性方面具有更好的性能。

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