室内无线网络设计的再思考:低功耗、低频率、全双工

B. Radunovic, Dinan Gunawardena, P. Key, A. Proutière, Nikhil Singh, Vlad Balan, G. DeJean
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引用次数: 192

摘要

现有的2.5GHz和5GHz的室内WiFi网络使用了太多的传输功率,因为高载波频率限制了信号的穿透和连接。相反,我们提出了一种新的室内无线网格设计范例,基于低频,利用以前用作模拟电视频段的新释放的空白空间,并且低功耗-比目前使用的功耗低100倍。初步实验表明,这保持了与现有网络相似的连通性和性能水平。它还提供了更统一的连接,从而简化了MAC和路由协议的设计。我们还提倡单频段的全双工网络,这在这种情况下是可能的(因为我们在低频率下工作)。它有可能使每个链路的吞吐量加倍,并消除隐藏的终端。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rethinking Indoor Wireless Mesh Design: Low Power, Low Frequency, Full-Duplex
Existing indoor WiFi networks in the 2.5GHz and 5 GHz use too much transmit power, needed because the high carrier frequency limits signal penetration and connectivity. Instead, we propose a novel indoor wireless mesh design paradigm, based on Low Frequency, using the newly freed white spaces previously used as analogue TV bands, and Low Power - 100 times less power than currently used. Preliminary experiments show that this maintains a similar level of connectivity and performance to existing networks. It also yields more uniform connectivity, thus simplifies MAC and routing protocol design. We also advocate full-duplex networking in a single band, which becomes possible in this setting (because we operate at low frequencies). It potentially doubles the throughput of each link and eliminates hidden terminals.
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