细粒度频率对抗物联网中的交叉技术干扰:测量研究

C. Shekhar, Sudipta Saha
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引用次数: 2

摘要

本文提出了一种解决2.4 GHz ISM频段低功耗WSN/IoT-edge中严重WiFi干扰问题的可行方法。通过大量的多频链路测量实验,我们证明了在频带被WiFi信道完全占用的严重拥塞情况下,低功耗ZigBee通信的多信道协议应该尽量利用所有1 MHz分隔的80个不同频率,而不是仅仅局限于16个标准信道。通过对户外链路测量数据的深入分析,我们观察到可用频率的可用性遵循一个众所周知的lsamvy特征。利用这一特性,我们提出了一种高效的频率搜索机制,可以在当前工作频率下降时快速找到合适的频率。基于跟踪的仿真结果表明,与单纯的基于随机探针的搜索相比,该策略的搜索速度提高了80%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fine-grained Frequencies to Combat Cross Technology Interference in IoT: A Measurement Study
In this paper we show a possible way to deal with the problem of severe WiFi interference in low power WSN/IoT-edge in the 2.4 GHz ISM band. Through extensive multi-frequency link-measurement experiments we demonstrate that under heavy congestion when the frequency band is fully occupied by WiFi channels, the multi-channel protocols for low power ZigBee communication should try to exploit all the 1 MHz separated 80 different frequencies instead of sticking to only the 16 standard channels. Through an in-depth analysis of the outdoor link measurement data we observe that the availability of the usable frequencies follows a well-known lévy characteristics. Exploiting this special property, we propose an efficient frequency searching mechanism that can quickly find a suitable frequency when the current operating frequency degrades. Our trace-based simulation results show that the proposed strategy can perform upto 80% faster compared to the naive random probe based searching.
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