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Spectrum Measurements and Analysis for Cognitive Radio Applications in Palestine

机译:巴勒斯坦认知无线电应用的光谱测量和分析

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In this paper, we first investigate spectrum occupancy of the Palestinian FM, UHF and GSM bands by using the low-cost software defined radio (SDR) device RTL-SDR. The spectrum occupancy measurements provide evidence that the UHF television (TV) band is under-utilized resulting in TV white spaces. Therefore, dynamic spectrum access based on cognitive radio (CR) can significantly improve spectrum utilization for wireless communications. In Particular, we propose three solutions for mobile spectrum shortage based on three CR concepts, namely: interweave CR, underlay CR, and overlay CR. In the first solution, an interweave CR system is suggested to efficiently utilize the TV white spaces in the UHF TV band. In the second solution, an underlay CR system based on wideband code division multiple access (WCDMA) is introduced to underlay the primary GSM system. In the third solution, an overlay CR system is proposed based on orthogonal frequency division multiplexing (OFDM) to share the same spectrum band with the primary GSM system. It is confirmed that the proposed solutions can solve the spectrum scarcity and limit the interference levels, and consequently improve system capacity.
机译:在本文中,我们首先使用低成本软件定义的无线电(SDR)RTL-SDR来研究巴勒斯坦FM,UHF和GSM频带的频谱占用。频谱占用测量提供了证据表明,UHF电视(电视)频带被利用,导致电视白色空间。因此,基于认知无线电(CR)的动态频谱访问可以显着改善无线通信的频谱利用率。特别是,我们提出了三次基于三个CR概念的移动频谱短缺解决方案,即:交织次CR,衬垫CR和覆盖CR。在第一种解决方案中,建议互通的CR系统有效地利用UHF电视带中的电视白色空间。在第二个解决方案中,引入了基于宽带码分多址(WCDMA)的底层CR系统,介绍了主GSM系统。在第三解决方案中,基于正交频分复用(OFDM)来提出覆盖CR系统,以与主GSM系统共享相同的频谱带。据证实,所提出的解决方案可以解决频谱稀缺性并限制干扰水平,从而提高系统容量。

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