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Improving the Energy Efficiency of a Clock Synchronization Protocol for WSNs Using a TDMA-Based MAC Protocol

机译:使用基于TDMA的MAC协议提高WSN的时钟同步协议的能效

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Clock synchronization protocols in wireless sensor networks (WSNs) provide a uniform notion of time which is required by both system as well as application level programs of WSNs. Since nodes have limited energy, it is required that the energy consumed by the clock synchronization protocols is as minimum as possible. Synchronous clock synchronization protocols execute their clock synchronization process at each node, roughly during the same real-time interval, called synchronization phase. The energy consumed by these protocols depends on the duration of the synchronization phase and how frequently the synchronization phase is executed. Hence, to minimize the energy consumption by each node, the duration of synchronization phase should be as small as possible, and the interval between consecutive synchronization phases as large as possible. Due to different drift rates of the clocks, the synchronization phases at different nodes drift apart and special techniques are required to keep them in sync. Keeping synchronization phases at neighbouring nodes in sync helps to reduce the synchronization phase. In this paper, we propose a novel technique using TDMA-based MAC protocol to keep the synchronization phases at neighbouring nodes in sync much more tightly than the existing techniques. We have applied the technique in the improved weighted-average based clock synchronization (IWICS) protocol to reduce the synchronization phase considerably and the modified TDMA-based IWICS protocol is named TIWICS protocol. This reduction in energy consumption is achieved without reducing the synchronization accuracy. Simulation results obtained using Castalia network simulator and the experimental results obtained using a test bed of WSN consisting of a few TELUS motes confirm the effectiveness of the approach.
机译:无线传感器网络(WSN)中的时钟同步协议提供了统一的时间概念,这是系统以及WSN的应用程序所需要的。由于节点的能量有限,因此要求时钟同步协议消耗的能量尽可能最小。同步时钟同步协议大致在同一实时间隔(称为同步阶段)中在每个节点上执行其时钟同步过程。这些协议消耗的能量取决于同步阶段的持续时间以及执行同步阶段的频率。因此,为了最小化每个节点的能量消耗,同步阶段的持续时间应尽可能小,并且连续同步阶段之间的间隔应尽可能大。由于时钟的漂移速率不同,因此不同节点上的同步相位会漂移,因此需要特殊的技术来使其保持同步。使相邻节点的同步阶段保持同步有助于减少同步阶段。在本文中,我们提出了一种新技术,该技术使用基于TDMA的MAC协议来使相邻节点的同步相位比现有技术更紧密地保持同步。我们已将该技术应用到改进的基于加权平均的时钟同步(IWICS)协议中,以大大减少同步阶段,并且将基于TDMA的改进IWICS协议命名为TIWICS协议。在不降低同步精度的情况下实现了能量消耗的减少。使用Castalia网络模拟器获得的模拟结果以及使用由一些TELUS微粒组成的WSN测试床获得的实验结果证实了该方法的有效性。

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