Performance Analysis of Synchronous Wakeup Patterns in Contention-Based Sensor Networks Using a Finite Queuing Model

Jun Luo, Ling-ge Jiang, Chen He
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引用次数: 9

Abstract

To conserve energy, periodical active/sleep dynamics is adopted in the design of medium access protocol (MAC) in wireless sensor networks. At the same time, the QoS requirements (e.g. packet delay, packet loss rate and throughput) need to be satisfied. In synchronous wakeup patterns of contention-based sensor networks, nodes wake up simultaneously and compete to access a shared channel for data transmission. We develop a finite queuing model for the sensor nodes and derive the network performance of contention-based sensor networks with the synchronous wakeup patterns. Furthermore, the impact of active/sleep duty cycle, active time scale and node buffer size on the tradeoff between power efficiency and QoS requirements is studied based on the model. Simulation results match well with our analysis results and validate the accuracy of our model and approach.
基于有限排队模型的基于竞争的传感器网络同步唤醒模式性能分析
为了节能,无线传感器网络中的介质访问协议(MAC)采用了周期性的主动/休眠动态设计。同时,需要满足QoS要求(如数据包延迟、丢包率和吞吐量)。在基于竞争的传感器网络的同步唤醒模式中,节点同时唤醒并竞争访问共享信道进行数据传输。我们建立了传感器节点的有限排队模型,并推导了具有同步唤醒模式的基于竞争的传感器网络的网络性能。在此基础上,研究了活动/睡眠占空比、活动时间尺度和节点缓冲区大小对功率效率和QoS要求之间权衡的影响。仿真结果与分析结果吻合较好,验证了模型和方法的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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