审视下LTE/Wi-Fi共存:一项实证研究

C. Capretti, F. Gringoli, N. Facchi, P. Patras
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引用次数: 15

摘要

移动运营商正在寻求通过将长期演进(LTE)蜂窝操作扩展到未经许可的频段来增加网络容量。虽然这些努力可能会对预计的移动数据流量的指数级增长做出反应,但对于LTE与现有Wi-Fi部署的和谐共存存在重大担忧。在本文中,我们通过实验描述了在广泛的网络条件下共享相同频谱时LTE和Wi-Fi的行为。具体来说,我们部署了一个带有商用Wi-Fi硬件和运行开源LTE堆栈的低成本软件定义无线电设备的测试平台。我们研究了在采用不同设置(包括LTE占空比模式、Wi-Fi提供的负载、传输功率水平、调制和编码方案以及数据包大小)时,这些技术可实现的用户级性能。我们证明,如果LTE定期使用“静默”子帧,共存是可行的,而无需修改Wi-Fi堆栈;然而,优化两者的性能需要对多个参数进行重要的调整,同时密切监测Wi-Fi的运行情况,并检测特定应用程序的要求。我们的研究结果为实际LTE/Wi-Fi共存机制的连贯设计奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
LTE/Wi-Fi co-existence under scrutiny: an empirical study
Mobile operators are seeking to increase network capacity by extending Long Term Evolution (LTE) cellular operation into unlicensed frequency bands. While these efforts may respond to the projected exponential growth in mobile data traffic, significant concerns exist about the harmonious coexistence of LTE with incumbent Wi-Fi deployments. In this paper we characterise experimentally the LTE and Wi-Fi behaviour when sharing the same spectrum while operating under a broad range of network conditions. Specifically, we deploy a test bed with commodity Wi-Fi hardware and low-cost software-defined radio equipment running an open-source LTE stack. We investigate the user-level performance attainable over these technologies when employing different settings, including LTE duty cycling patterns, Wi-Fi offered loads, transmit power levels, modulation and coding schemes, and packet sizes. We show that co-existence is feasible without modifications to the Wi-Fi stack, if LTE periodically employs "silent" sub-frames; however, optimising the performance of both requires non-trivial tuning of multiple parameters in conjunction with close monitoring of Wi-Fi operation and detection of application-specific requirements. Our findings lay the foundations for coherent design of practical LTE/Wi-Fi co-existence mechanisms.
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