使用FS-FBMC的FM无线电频段物联网应用的二次用户接入

K. Barlee, R. Stewart, L. Crockett
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引用次数: 3

摘要

本文提出了一种动态频谱接入(DSA)物理层(PHY)技术,该技术允许辅助用户(SU)访问传统调频频谱(88-108 MHz),用于替代数据通信应用。调频无线电波具有长距离传输的优良传播特性,并具有穿透建筑物的高水平。使用许可主用户(PU) FM无线电发射机的结构化地理定位数据库等工具,未经许可的su可以访问20mhz宽的部分频段,并在所有已知PU周围放置具有适当保护频段的频谱“洞”,并传输信号。基于Ofcom和FCC公布的PU保护比率,在城市环境中演示了FBMC(滤波器组多载波)发射机的操作,并通过“现场测试”模拟表明,所提出的PHY(可以干扰PU的“孔”中的能量)的带外(OOB)泄漏比使用等效的OFDM PHY低47 dB。结果表明,所提出的PHY是DSA-SU通信的合适候选者(例如在智慧城市物联网应用中),同时确保现有PU信号的完整性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Secondary User Access for IoT Applications in the FM Radio Band using FS-FBMC
In this paper a Dynamic Spectrum Access (DSA) Physical layer (PHY) technique is proposed that allows Secondary User (SU) access to the traditional FM Radio spectrum (88-108 MHz) for alternative data communication applications. FM radio waves have excellent propagation characteristics for long distance transmission, and have high levels of penetration through buildings. Using tools such as a structured geolocation database of licensed Primary User (PU) FM Radio transmitters, unlicensed SUs can access portions of the 20 MHz-wide band and transmit signals that place spectral ‘holes’ with suitable guard bands around all known PUs. Based on the PU protection ratios published by Ofcom and the FCC, the operation of a FBMC (Filter Bank Multi-Carrier) transmitter is demonstrated for an urban environment, and through ‘field test’ simulation it is shown that the Out Of Band (OOB) leakage of the proposed PHY (energy in the ‘holes’ that can interfere with the PU) is 47 dB lower than that of using an equivalent OFDM PHY. The results show that the proposed PHY is a suitable candidate for DSA-SU communication (e.g. in smart city IoT applications), whilst ensuring the integrity of incumbent PU signals.
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