首页> 外文会议>Sensor, Mesh and Ad Hoc Communications and Networks, 2009. SECON '09 >Medium Access Control Analytical Modeling and Optimization in Unslotted IEEE 802.15.4 Wireless Sensor Networks
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Medium Access Control Analytical Modeling and Optimization in Unslotted IEEE 802.15.4 Wireless Sensor Networks

机译:非插槽式IEEE 802.15.4无线传感器网络中的媒体访问控制分析建模和优化

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Accurate analytical expressions of delay and packet reception probabilities, and energy consumption of duty-cycled wireless sensor networks with random medium access control (MAC) are instrumental for the efficient design and optimization of these resource-constrained networks. Given a clustered network topology with unslotted IEEE 802.15.4 and preamble sampling MAC, a novel approach to the modeling of the delay, reliability, and energy consumption is proposed. The challenging part in such a modeling is the random MAC and sleep policy of the receivers, which prevents to establish the exact time of data packet transmission. The analysis gives expressions as function of sleep time, listening time, traffic rate and MAC parameters. The analytical results are then used to optimize the duty cycle of the nodes and MAC protocol parameters. The approach provides a significant reduction of the energy consumption compared to existing solutions in the literature. Monte Carlo simulations by ns2 assess the validity of the analysis.
机译:延迟和数据包接收概率的精确分析表达式以及具有随机介质访问控制(MAC)的占空比无线传感器网络的能耗,对于有效设计和优化这些资源受限的网络至关重要。给定具有未开槽IEEE 802.15.4和前导采样MAC的群集网络拓扑,提出了一种对延迟,可靠性和能耗建模的新颖方法。这种建模中的挑战性部分是接收机的随机MAC和睡眠策略,这会阻止建立数据包传输的确切时间。该分析给出了与睡眠时间,收听时间,流量速率和MAC参数有关的表达式。然后,将分析结果用于优化节点的占空比和MAC协议参数。与文献中的现有解决方案相比,该方法可显着降低能耗。 ns2的蒙特卡洛模拟评估了分析的有效性。

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