管理您的树木:来自大都市规模的低功耗无线网络的见解

Zhang Fu, O. Landsiedel, M. Almgren, M. Papatriantafilou
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引用次数: 4

摘要

低功耗无线,如IEEE 802.15.4,被设想为无线控制和通信的一项关键技术。在先进计量基础设施(AMI)的背景下,它可以作为一种节能的通信技术,用于建筑规模网络和城市规模网络的通信。了解基于802.15.4的网络的现实挑战和关键属性是研究社区和从业人员的基本要求:当在大都市规模部署和操作低功耗无线网络时,深入的知识对于确保网络可用性和生产级质量的性能至关重要。同样,研究人员在开发新的算法和协议时需要现实的网络模型。在本文中,我们从一个已部署的大都市规模的低功耗无线网络中提出了新的和现实世界的见解:它包括30万个独立的无线连接仪表,覆盖了一个拥有大约60万居民的城市。例如,我们的发现有助于估计现实世界的参数,如路由树的典型大小,它们的平衡,以及它们随时间的动态。此外,这些见解有助于理解和实际校准仿真模型的关键属性,如可靠性和吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Managing your trees: Insights from a metropolitan-scale low-power wireless network
Low-power wireless, such as IEEE 802.15.4, is envisioned as one key technology for wireless control and communication. In the context of the Advanced Metering Infrastructure (AMI), it serves as an energy-efficient communication technology for both communications at building-scale networks and city-scale networks. Understanding real-world challenges and key properties of 802.15.4 based networks is an essential requirement for both the research community and practitioners: When deploying and operating low-power wireless networks at metropolitan-scale, a deep knowledge is essential to ensure network availability and performance at production-level quality. Similarly, researchers require realistic network models when developing new algorithms and protocols. In this paper, we present new and real-world insights from a deployed metropolitan-scale low-power wireless network: It includes 300,000 individual wireless connected meters and covers a city with roughly 600,000 inhabitants. Our findings, for example, help to estimate real-world parameters such as the typical size of routing trees, their balance, and their dynamics over time. Moreover, these insights facilitate the understanding and the realistic calibration of simulation models in key properties such as reliability and throughput.
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