低占空比无线网络中的实用同步会合

Hao Huang, Jihoon Yun, Ziguo Zhong, S. Kim, T. He
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引用次数: 22

摘要

低占空比无线电业务已被提出用于面临严重能量限制的无线网络。尽管节省了能源,但在时钟漂移的实际问题下,无线电的责任循环产生了瞬时可用的无线链路,使通信会合成为一项具有挑战性的任务。为了克服以往工作的局限性,本文提出了一种用于低占空比无线网络同步交会的实用设计——PSR。PSR背后的关键思想是提取自然嵌入在无线电占空比模式中的定时信息,以便网络中的正常流量可以用作漂移检测的“自由”输入,这有助于减少(甚至消除)使用专用数据包或位的传统时间戳交换的开销。为了防止这种自由信息的过度使用,导致能源浪费,开发了一种能量驱动的时钟校准机制,以平衡能源效率和交会精度。通过扩展和比较四种不同的MAC协议,通过试验台实验和广泛的模拟来评估PSR。结果表明,在不同的流量负荷下,PSR是实用有效的,可以在不改变原有设计的情况下与MAC协议融合,提高其能效。
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PSR: Practical synchronous rendezvous in low-duty-cycle wireless networks
Low-duty-cycle radio operations have been proposed for wireless networks facing severe energy constraints. Despite energy savings, duty-cycling the radio creates transient-available wireless links, making communication rendezvous a challenging task under the practical issue of clock drift. To overcome limitations of prior work, this paper presents PSR, a practical design for synchronous rendezvous in low-duty-cycle wireless networks. The key idea behind PSR is to extract timing information naturally embedded in the pattern of radio duty-cycling, so that normal traffic in the network can be utilized as a “free” input for drift detection, which helps reduce (or even eliminate) the overhead of traditional time-stamp exchange with dedicated packets or bits. To prevent an overuse of such free information, leading to energy waste, an energy-driven adaptive mechanism is developed for clock calibration to balance between energy efficiency and rendezvous accuracy. PSR is evaluated with both test-bed experiments and extensive simulations, by augmenting and comparing with four different MAC protocols. Results show that PSR is practical and effective under different levels of traffic load, and can be fused with those MAC protocols to improve their energy efficiency without major change of the original designs.
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