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Spectrum shaping using NC-OFDM for cognitive radio applications

机译:使用NC-OFDM用于认知无线电应用的光谱整形

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Cognitive radio (CR) is an innovative technology that supports dynamic spectrum access to utilise the spectrum more efficiently in an opportunistic manner without interfering with the licensed users. Multi-carrier modulation techniques such as orthogonal frequency division multiplexing (OFDM) is identified as one of the suitable candidates for the design of CR systems. To provide high data rates while avoiding interference with licensed users, a variant of OFDM called non-contiguous OFDM (NC-OFDM) is used in CR. NC-OFDM is useful for dynamic shaping of spectrum based on the channel impairments, interference and jamming threats. In this work, the customised NC-OFDM transceiver link is simulated and compared with the customised OFDM link in the MATLAB environment. It is implemented in Zynq-7000 System-on-Chip (SoC) 7Z020 with radio-frequency front-end board, AD-FMCOMMS3-EBZ Software Defined Radio platform. Implementation of this link is carried out on Spartan-3A FPGA and compared the hardware resource utilisation with Zynq platform. It is observed that the Zynq platform utilises less hardware resources for the implementation. The transmitter spectrum, spectrum after de-activating unwanted sub-carriers, the spectrum shaping using raised cosine filtering, spectrum sensing using the correlation of known pattern and FFT-based spectrum sensing are also simulated in the MATLAB.
机译:认知式无线电(CR)是一种创新技术,支持动态频谱访问,以便在机会主义方式中更有效地利用频谱,而不会干扰许可用户。诸如正交频分复用(OFDM)的多载波调制技术被识别为CR系统设计的合适候选之一。为了提供高数据速率,同时避免对许可用户的干扰,OFDM称为非连续OFDM(NC-OFDM)的变体用于CR。 NC-OFDM对于基于频道损伤,干扰和干扰威胁,对频谱的动态整形是有用的。在这项工作中,模拟了自定义的NC-OFDM收发器链路,并与Matlab环境中的自定义OFDM链路进行了比较。它是在Zynq-7000系统上实现的(SOC)7Z020,带射频前端板,AD-FMComms3-EBZ软件定义的无线电平台。在Spartan-3A FPGA上执行此链接的实现,并将硬件资源利用与Zynq平台进行了比较。观察到Zynq平台利用较少的硬件资源来实现。发射器频谱,频谱在去激活不需要的子载体之后,使用升高的余弦滤波的光谱整形,使用已知模式的相关性和基于FFT的频谱感测的频谱感测在Matlab中。

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