FLASH:使用声波传输和高精度时钟同步的无线传感器网络中的细粒度定位

Evangelos Mangas, A. Bilas
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引用次数: 16

摘要

无线传感器网络中的传感器定位是许多应用的重要组成部分。以前的工作已经证明了如何使用各种方法实现本地化。在本文中,我们专注于实现不需要外部基础设施、专门硬件支持或过多传感器资源的细粒度定位。我们使用了一个真实的传感器网络,并对实际系统进行了测量。我们采用了一种依赖于声音和时钟同步的定位方法。我们工作的贡献是在每个传感器上实现一致的声脉冲检测,并使用高精度时钟同步实现精确的距离估计。我们首先描述我们的技术,然后用一个真实的设置来评估我们的方法。结果表明,该方法的平均时钟同步精度为5μs。我们通过中断机制使用外部全局时钟来验证这种准确性。我们的声音检测技术能够在室内环境中持续识别10米距离的声音脉冲。结合这两种技术,我们发现我们的定位方法可以准确估计距离,平均误差为11厘米,在最远7米的距离内,在各种室内环境下,距离估计一致,最远10米。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FLASH: Fine-Grained Localization in Wireless Sensor Networks Using Acoustic Sound Transmissions and High Precision Clock Synchronization
Sensor localization in wireless sensor networks is an important component of many applications. Previous work has demonstrated how localization can be achieved using various methods. In this paper we focus on achieving fine-grained localization that does not require external infrastructure, specialized hardware support, or excessive sensor resources. We use a real sensor network and provide measurements on the actual system. We adopt a localization approach that relies on acoustic sounds and clock synchronization. The contribution of our work is achieving consistent sound pulse detection at each sensor and precise range estimation using a high-precision clock synchronization implementation. We first describe our technique and then we evaluate our approach using a real setup. Our results show that our approach achieves an average clock synchronization accuracy of 5μs. We verify this accuracy using an external global clock via an interrupt mechanism. Our sound detection technique is able to consistently identify sound pulses up to 10m distances in indoor environments. Combining the two techniques, we find that our localization method results in accurate range estimation with an average error of 11cm in distances up to 7m and in consistent range estimation up to 10m in various indoor environments.
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