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OFDM-based overlay cognitive radios with improved spectral leakage suppression for future generation communications

机译:基于OFDM的覆盖认知收音机,具有改进的频谱泄漏抑制,以供未来的通信

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Dynamic spectrum sharing with minimum spectrum leakage is actively considered to meet the requirements of future generation networks which are expected to support huge amount of data traffic beyond 2020 with limited spectrum. In this paper, we propose a spectral leakage suppression technique for orthogonal frequency division multiplexing (OFDM)-based overlay cognitive radio (CR). We apply the Bohman window-based pulse shaping, which has a high sidelobe fall rate and low highest sidelobe power, to the edge subcarriers rather than the entire waveform of the secondary users (SUs) utilized spectrum. We allocate antipodal symbol pairs to the Bohman-windowed subcarriers to overcome the problem of a slightly large 3-dB bandwidth of the Bohman window. The power spectral density (PSD) of the proposed scheme rolls off asymptotically as of f, as compared to the current state-of-the-art where the sidelobe rolls off asymptotically as of f. Simulation results show improved bit-error-rate (BER) performances of the primary user (PU) and the SU in the proposed scheme due to improved spectral leakage suppression. The practicality of the proposed scheme is validated by field programmable gate array (FPGA) prototyping.
机译:积极考虑具有最小频谱泄漏的动态频谱共享,以满足未来生成网络的要求,这些网络预计将支持2020年超出2020的大量数据流量。在本文中,我们提出了一种用于正交频分复用(OFDM)的光谱泄漏抑制技术 - 基于覆盖认知的认知无线电(CR)。我们应用了基于波的窗口窗口的脉冲整形,其具有高的Sidelobe跌倒率和低最高的Sidelobe功率,而不是边缘子载波,而不是二级用户(SUS)利用频谱的整个波形。我们向Bohman-vipled子载波分配反双向符号对,以克服Bohman窗口的略大3 dB带宽的问题。与F的当前最先进的现有技术相比,所提出的方案的功率谱密度(PSD)从F的渐近滚下来滚动。由于改善的光谱泄漏抑制,仿真结果表明,在所提出的方案中,提高了主要用户(PU)和SU的误码率(BER)性能。所提出的方案的实用性由现场可编程门阵列(FPGA)原型验证。

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