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Cross-layer energy analysis of multihop wireless sensor networks

机译:多跳无线传感器网络的跨层能量分析

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In this paper, we propose a detailed energy survey of the physical, data link, and network layer by analytical techniques. We also show the impact of regular sleep periods on node energy consumption and present a comparison analysis of single-hop vs. multi-hop communications in the energy realm. A detailed energy expenditure analysis of not only the physical layer but also the link and network layer provides a basis for developing new energy efficient wireless sensor networks. Regular, coordinated sleeping extends the lifetime of sensor nodes, but systems can only benefit from sleeping in terms of transmitted packets if the data arrival rate to the system is low. Energy efficiency is the driving motivation for it can be considered the most important factor for wireless sensor networks because of the power constraints set by battery operation. Radio solutions in the lower ISM bands are attractive because of their relatively easy implementation and low power consumption. However, the data rates of these commercial radios are also relatively low, limiting transmittable frame sizes to a few tens of octets along with strict duty cycle requirements. From the analysis we extract key parameters of selected MAC protocols and show that some traditional mechanisms, such as binary exponential backoff, have some inherent problems. We also argue that single-hop communications has up to 40% lower energy consumption than multihop forwarding within the feasible transmission distances of an ISM radio.
机译:在本文中,我们建议通过分析技术对物理层,数据链路层和网络层进行详细的能源调查。我们还展示了常规睡眠时间对节点能耗的影响,并提出了能量领域中单跳通信与多跳通信的比较分析。不仅对物理层而且对链路和网络层的详细能耗分析也为开发新型节能无线传感器网络提供了基础。定期,协调的睡眠可延长传感器节点的寿命,但是,只有到达系统的数据到达率较低时,系统才能从传输的数据包中受益。能源效率是驱动动力,因为电池操作会限制功率,因此能源效率可以被视为无线传感器网络的最重要因素。较低的ISM频段中的无线电解决方案具有相对容易实现和低功耗的特点,因此颇具吸引力。但是,这些商用无线电的数据速率也相对较低,将可发送的帧大小限制在几十个八位位组,同时要求严格的占空比。通过分析,我们提取了所选MAC协议的关键参数,并表明某些传统机制(例如二进制指数退避)存在一些固有的问题。我们还认为,在ISM无线电的可行传输距离内,单跳通信的能耗比多跳转发低40%。

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