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Performance of multi-hop networks using beacon and non-beacon scheduling in Wireless Sensor Network (WSN)

机译:无线传感器网络(WSN)中使用信标和非信标调度的多跳网络的性能

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Wireless Sensor Network (WSN) is a promising technology for many applications, such as industrial, environment, and health-care application. The first requirement of WSN is energy efficiency in order to increase the network node lifetime. The second is reliability because packet drop cannot be tolerated in critical time applications. In this paper, we use NS2 simulation to evaluate and analyze the IEEE 802.15.4 standard in multi-hop WSN with a tree topology base on IEEE 802.15.4. Beacon enabled mode is used slotted CSMA/CA and non-beacon enabled mode is used unslotted CSMA/CA. Performance of beacon enabled and non-beacon enabled were evaluated and analyzed to understand the impact of protocol parameters such as Superframe Order (SO), Beacon Order (BO), and Traffic Load. The performance of the network which have been evaluated in detail are the throughput, energy consumption, end to end delay, packet success probability, drop packets and the percentage of the energy efficiency. The simulation result show that of beacon enabled is better than non beacon enabled in terms of the throughput, drop packet, energy consumption, and energy efficiency.
机译:无线传感器网络(WSN)是用于许多应用程序的有前途的技术,例如工业,环境和医疗保健应用程序。 WSN的第一个要求是能源效率,以增加网络节点的寿命。第二个是可靠性,因为在关键时间应用中不能容忍丢包。在本文中,我们使用NS2仿真来评估和分析基于IEEE 802.15.4的树型拓扑的多跳WSN中的IEEE 802.15.4标准。使用信标启用模式的时隙CSMA / CA,不使用信标启用模式的时隙CSMA / CA。评估并分析了启用信标和未启用信标的性能,以了解协议参数(如超帧顺序(SO),信标顺序(BO)和流量负载)的影响。已详细评估的网络性能为吞吐量,能耗,端到端延迟,数据包成功概率,丢包和能效百分比。仿真结果表明,在吞吐量,丢包,能耗和能效方面,启用信标要优于未启用信标。

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