基于预测的网状WiFi云辅助动态信道分配机制

M. Kuran, Oguz Kaan Koksal, Melih Kılıç, Ahmet Uğur İlter, Gökçe Ekin Nehas, Sadık Öztürk
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引用次数: 0

摘要

在本文中,我们提出了一种云辅助的WiFi网状网络动态信道分配系统,同时考虑2.4 GHz和5 GHz接口,以提高WiFi网络的整体性能和用户体验。我们的解决方案利用接入点(AP)通过进行清晰的信道评估,在所有可能的信道中进行周期性的干扰电平测量。这些测量结果被发送到具有预测模块的云组件并由其处理,该模块预测每个适用通道在不久的将来的状态。最后,如果在不久的将来存在比其操作通道更好的通道,则向每个AP发送通道更改决策。我们进行了大量的现场试验,以选择系统的各种关键参数,同时考虑到系统的整体性能和对时间敏感的关键应用(如实时应用)的影响。我们还对我们提出的系统进行了现场试验,在实际生活中有5万个ap,并将其性能与广泛部署的最少拥塞通道搜索(LCCS)机制进行了比较。我们的研究结果表明,我们的机制不仅在操作通道干扰水平方面优于LCCS,而且以更少的通道变化数量实现了这一目标,从而产生更少的破坏性用户体验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Forecasting-based Cloud-assisted Dynamic Channel Assignment Mechanism for Mesh WiFi Networks
In this paper, we propose a cloud-assisted dynamic channel assignment system for WiFi mesh networks considering both the 2.4 GHz and 5 GHz interfaces to increase the overall performance and user experience in the WiFi network. Our solution utilizes periodic interference level measurements by the access points (AP) in all possible channels via conducting clear channel assessments. These measurements are sent to and processed by a cloud component with a forecasting module that predicts the state of each applicable channel in the near future. Finally, a channel change decision is sent to each AP if there is a better channel than its operating channel in the near future.We have conducted numerous field trials for a good selection of the various key parameters of the system with both the overall system’s performance and impact over time-sensitive critical applications such as real-time applications in mind. We have also conducted a field trial of our proposed system over a large real-life population of fifty thousand APs and compared its performance against the widely deployed Least Congested Channel Search (LCCS) mechanism. Our results show that not only our mechanism outperforms LCCS in terms of operating channel interference level but achieves this goal with much less number of channel changes yielding a much less disruptive user experience.
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