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On the practical implementation of propagation delay and clock skew compensated high-precision time synchronization schemes with resource-constrained sensor nodes in multi-hop wireless sensor networks

机译:多跳无线传感器网络中资源受限的传感器节点的传播延迟和时钟偏移补偿高精度时间同步方案的实际实现

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In wireless sensor networks (WSNs), implementing an energy-efficient, high-precision time synchronization scheme on resource-constrained sensor nodes is challenging but essential to long-running applications for accurate environment monitoring and detection of important events, often covering a large area in the field. Our investigation of the practical implementation on a real testbed of the state-of-the-art WSN time synchronization scheme based on the asynchronous source clock frequency recovery and the reverse two-way message exchange, which can compensate for both propagation delay and clock skew for higher precision and energy efficiency, reveals that its performance on battery-powered, low-complexity sensor nodes is not up to that predicted from simulation experiments due to the limited precision floating-point arithmetic of sensor nodes. Noting the lower computational capability of typical sensor nodes and its impact on time synchronization, we propose an asymmetric high-precision time synchronization scheme that can provide high-precision time synchronization even with resource-constrained sensor nodes in multi-hop WSNs. In the proposed scheme, all synchronization-related computations are done at the head node equipped with abundant computing and power resources, while the sensor nodes are responsible for timestamping only to further release their computational burdens. Experimental results with a testbed based on TelosB motes running TinyOS demonstrate that the proposed time synchronization scheme can avoid time synchronization errors resulting from the single-precision floating-point arithmetic of the resource-constrained sensor nodes and achieve microsecond-level time synchronization accuracy in multi-hop WSNs. (C) 2019 Elsevier B.V. All rights reserved.
机译:在无线传感器网络(WSN)中,在资源受限的传感器节点上实现高能效,高精度时间同步方案具有挑战性,但对于长期运行的应用程序来说是必不可少的,以准确地监视和检测重要事件,通常覆盖大范围在该领域。我们对基于异步源时钟频率恢复和反向双向消息交换的最新WSN时间同步方案的实际测试平台的实际实现进行了研究,该方案​​可以补偿传播延迟和时钟偏斜为了实现更高的精度和能效,它表明,由于传感器节点的精度浮点算法有限,其在电池供电的低复杂度传感器节点上的性能无法达到仿真实验的预期。考虑到典型传感器节点的较低计算能力及其对时间同步的影响,我们提出了一种非对称高精度时间同步方案,该方案即使在多跳WSN中资源受限的传感器节点也可以提供高精度时间同步。在所提出的方案中,所有与同步相关的计算都是在配备有大量计算和功率资源的头节点上完成的,而传感器节点仅负责时间戳,以进一步释放它们的计算负担。基于运行TinyOS的TelosB Motes的测试平台的实验结果表明,所提出的时间同步方案可以避免资源受限的传感器节点的单精度浮点算法所导致的时间同步错误,并在多点时间内达到微秒级的时间同步精度跳的WSN。 (C)2019 Elsevier B.V.保留所有权利。

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