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Modeling MAC Protocol Based on Frame Slotted Aloha for Low Energy Critical Infrastructure Sensor Networks

机译:低能耗关键基础设施传感器网络基于帧时隙Aloha的MAC协议建模

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We propose and analyse a medium access control (MAC) protocol for low energy critical infrastructure monitoring (LECIM) networks. As the packet drop probability plays crucial role in LECIM applications, we propose framed slotted aloha based MAC for LECIM using linearly increased contention window size to reduce the packet drop probability. We present a mathematical model of our proposed MAC under both saturated and nonsaturated traffic scenarios. We use probabilistic approach to find the performance metrics such as collision probability, packet drop probability, throughput, and energy consumption. Also, we obtain the probability-generating function of the head-of-line (HoL) delay of packet. The analytical results match with simulations. Our results can be used in the design of a system by providing the optimum system parameters for endpoints satisfying the given quality of service requirements on packet drop probability, energy consumption, and delay.
机译:我们提出并分析了用于低能耗关键基础设施监控(LECIM)网络的媒体访问控制(MAC)协议。由于丢包概率在LECIM应用中起着至关重要的作用,因此我们建议使用线性增加的竞争窗口大小来降低LECIM的基于成帧时隙基于MAC的LECIM,以降低丢包概率。我们提出了在饱和和非饱和流量情况下我们提出的MAC的数学模型。我们使用概率方法来找到性能指标,例如冲突概率,丢包概率,吞吐量和能耗。此外,我们获得了数据包的行首(HoL)延迟的概率生成函数。分析结果与模拟匹配。我们的结果可通过为端点提供最佳系统参数来满足系统的设计要求,这些端点满足有关丢包概率,能耗和延迟的给定服务质量要求。

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