Extended energy model for the low rate WPAN

I. Howitt, Rogelio Neto, Jing Wang, J. Conrad
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引用次数: 37

Abstract

Energy efficiency is a major concern in wireless sensor networks (WSNs) and as such power control policies play an essential component in maximizing a network's lifetime. Optimal power control policies provide the correct trade-off in balancing packet transmission reliability within the operational environment with expanded energy based on the wireless transceiver characteristics. In this paper, an extension of an energy model previously developed for the Chipcon CC2420, an IEEE802.15.4trade device, is presented. The approach provides an extended energy model taking into account transitions energy cost between the Chipcon CC2420 operational states. The empirical testbed used to obtain the measured data is presented along with a summary of the measurements. A comparison is made between the extended model and the previous model to illustrate the importance of incorporating the transition energy requirements
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低速率WPAN的扩展能量模型
能源效率是无线传感器网络(wsn)的主要关注点,因此功率控制策略在最大化网络寿命方面起着至关重要的作用。最优功率控制策略能够根据无线收发器的特性,在运行环境中平衡数据包传输可靠性和扩展能量。本文介绍了先前为ieee802.15.4交易设备Chipcon CC2420开发的能量模型的扩展。该方法提供了一个扩展的能量模型,考虑了Chipcon CC2420工作状态之间的转换能量成本。用于获得测量数据的经验试验台连同测量的摘要一起被提出。将扩展后的模型与之前的模型进行了比较,以说明纳入转换能量需求的重要性
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MAC layer security of 802.15.4-compliant networks An energy-efficient unequal clustering mechanism for wireless sensor networks Reducing the energy drain in multihop ad hoc networks Fast connection recovery in WLAN-to-cellular vertical handoff A cross-layer approach to service discovery and selection in MANETs
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