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BailighPulse: A low duty cycle data gathering protocol for mostly-off Wireless Sensor Networks

机译:BailighPulse:一种低占空比数据收集协议,适用于大部分关闭的无线传感器网络

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Mostly-off sensor network applications alternate between long periods of inactivity (ranging from minutes to hours) and short periods of activity (normally a few seconds). From an energy consumption point of view, it is desirable that the network switch off completely during application inactive periods and wake-up efficiently at the start of application active periods. The fundamental problem preventing this is the inter-node clock skew arising from the network being off for a long period. Existing solutions maintain synchronization during the inactive period or use the radio excessively to enable asynchronous wake-up. Herein, we propose BailighPulse, a low duty cycle data gathering protocol for mostly-off WSN applications. BailighPulse incorporates a novel multi-hop wake-up scheme that allows for energy efficient recovery of network synchronization after long off periods. The scheme uses a staggered wake-up schedule and optimized channel polling during wake-up based on knowledge of the pre-defined application-level schedule. Herein, we provide an extensive assessment of the protocol's performance including an analytic model, simulations, and testbed results. We show that, for a homogeneous schedule with collection period greater than 2 min, BailighPulse reduces radio duty cycles by at least 30% and 90% compared to Dozer and B-MAC, respectively. We also show that BailighPulse is able to reduce radio duty cycle by to 68% for a heterogeneous schedule under similar conditions. (C) 2014 Elsevier B.V. All rights reserved.
机译:大多数关闭的传感器网络应用程序会在长时间不活动(从几分钟到几小时不等)和短时间(通常是几秒钟)之间切换。从能量消耗的角度来看,希望网络在应用程序不活动期间完全关闭,并在应用程序活动开始时有效地唤醒。防止这种情况的根本问题是由于网络长时间关闭而导致的节点间时钟偏斜。现有解决方案在不活动期间保持同步,或者过度使用无线电以启用异步唤醒。本文中,我们提出了BailighPulse,这是一种用于大多数WSN应用的低占空比数据收集协议。 BailighPulse合并了一种新颖的多跳唤醒方案,该方案可在长时间关闭后对网络同步进行节能恢复。该方案基于对预定义的应用程序级时间表的了解,使用了交错的唤醒时间表和优化的唤醒过程中的信道轮询。本文中,我们提供了对协议性能的广泛评估,包括分析模型,模拟和测试平台结果。我们显示,对于收集时间大于2分钟的同质时间表,与Dozer和B-MAC相比,BaiglighPulse分别将无线电占空比降低了至少30%和90%。我们还表明,对于类似情况下的异构时间表,BaiglighPulse能够将无线电占空比降低至68%。 (C)2014 Elsevier B.V.保留所有权利。

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