Reduce Time Synchronization Cost for High Latency and Resource-Constrained Sensor Networks

Yi Wang, Benxiong Huang, Furong Wang, Fan Zhang
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引用次数: 3

Abstract

For emerging resource-constrained sensor networks, energy efficiency and computation simplicity could be as important as precision. Existing terrestrial synchronization protocols have already achieved high precision in radio networks, but none of them perform well in high latency networks like underwater acoustic sensor networks: they either assume instantaneous packet transmission between nodes, or ignore clock drift during synchronization process. By addressing these problems, the recent proposed TSHL protocol provides precise time synchronization for high latency networks. However, due to its high energy and computation consumption, original TSHL design is still not practical in resource-constrained applications such as sensor networks which have stringent constraints on system resources. The main results of this paper are as follows. First, we present a complete mathematical analysis of TSHL which is lack in the original paper. Dominant factors of errors are clarified, as well as communication and computation cost functions. We prove that even with as less as 3 beacon messages, an acceptable precision level can be achieved by increasing beacon messages interval. In this lightweight synchronization, communication and computation cost for the synchronization process are greatly reduced, which is critical for those high latency and resource-constrained sensor networks.
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降低高延迟和资源受限传感器网络的时间同步成本
对于新兴的资源受限传感器网络,能源效率和计算简单性可能与精度一样重要。现有的地面同步协议在无线网络中已经达到了很高的精度,但在像水声传感器网络这样的高延迟网络中,它们要么假设节点之间的数据包传输是瞬时的,要么忽略同步过程中的时钟漂移。通过解决这些问题,最近提出的TSHL协议为高延迟网络提供了精确的时间同步。然而,由于TSHL的高能量和计算消耗,原始的TSHL设计在资源受限的应用中仍然不实用,例如对系统资源有严格约束的传感器网络。本文的主要研究结果如下:首先,本文对TSHL进行了完整的数学分析,弥补了原论文的不足。明确了误差的主导因素,以及通信和计算成本函数。我们证明即使只有少于3个信标消息,通过增加信标消息间隔也可以达到可接受的精度水平。这种轻量级的同步方式大大降低了同步过程的通信和计算成本,这对于高延迟和资源受限的传感器网络来说至关重要。
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