Methods and performance aspects for wireless clock synchronization in IEEE 802.11 for the IoT

A. Mahmood, T. Sauter, H. Trsek, R. Exel
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引用次数: 10

Abstract

IEEE 802.11 Wireless Local Area Networks are an appealing complement, if not an alternative, to Ethernet-based industrial solutions because it not only can match Ethernet's high throughput but also leads to reduced costs and more system-design flexibility. However, like in Ethernet, clock synchronization service for applications has not been inherently present in IEEE 802.11. This paper analyzes the clock synchronization mechanisms of IEEE 802.11, which has become a major communication technology to establish the Internet of Things in industries, and how they can be used to provide high precision clock synchronization. In doing so, this work discusses the different parameters which can affect the performance of clock synchronization over the wireless channel, such as timestamping quality, clock adjustment, and synchronization overhead. An outlook to the future includes the new trends for synchronization for wired-wireless hybrid and fully wireless mesh networks where the IEEE 802.1AS audio video bridging networks and IEEE 802.11s mesh networks are leading the line, respectively.
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ieee802.11物联网无线时钟同步的方法和性能方面
IEEE 802.11无线局域网是基于以太网的工业解决方案的一个有吸引力的补充,如果不是替代的话,因为它不仅可以匹配以太网的高吞吐量,而且还可以降低成本和提高系统设计的灵活性。然而,与以太网一样,用于应用程序的时钟同步服务在IEEE 802.11中并没有固有的存在。本文分析了IEEE 802.11的时钟同步机制,以及如何利用它来提供高精度的时钟同步。IEEE 802.11是建立工业物联网的主要通信技术。在此过程中,本文讨论了可能影响无线信道时钟同步性能的不同参数,例如时间戳质量、时钟调整和同步开销。对未来的展望包括有线-无线混合和全无线网状网络同步的新趋势,其中IEEE 802.1AS音频视频桥接网络和IEEE 802.11s网状网络分别处于领先地位。
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