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DFT-s-SSB OFDM system using new SSB selection

机译:DFT-S-SSB OFDM系统使用新的SSB选择

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In order to solve the serious interference problem due to the overlapping subcarriers of USB (upper side band) and LSB (lower side band) spectrums in the conventional DFT-s-SSB-OFDM (discrete Fourier transform spreading single side band orthogonal frequency division multiplexing) system, in this paper, we propose an novel DFT-s-SSB OFDM using an improved DFT spreading SSB (discrete Fourier transform spreading single sideband) selection method and the convolutional coding can be combined to alleviate the BER (bit error rate) performance degradation problem. So, the spectrum efficiency may be increased than the conventional DFT-s-SSB OFDM system and the BER (bit error rate) performance can be improved as well. In the proposed DFT-s-SSB OFDM system, the DFT spreading SSB selection technique is improved so that the USB (upper sideband) component can be selected, and the LSB and USB can be simultaneously transmitted by the suggested SSB selection method. Even though in this suggested method there is a slight loss of data rate due to convolutional coding and DFT Spreading SSB improvement, the proposed system can improve spectral efficiency by the proposed SSB selection method and can improve the BER performance by convolutional coding combination. In conclusion, we can increase the communication capacity and the frequency resource utilization factor using the proposed system.
机译:为了解决传统DFT-S-SSB-OFDM中的USB(上侧带)和LSB(下侧带)频谱的重叠子载波而产生的严重干扰问题(离散傅里叶变换扩展单侧频带正交频分复用)系统,在本文中,我们提出了一种新的DFT-S-SSB OFDM,使用改进的DFT扩展SSB(离散傅里叶变换传播单边带)选择方法,并且可以组合卷积编码以缓解BER(误码率)性能劣化问题。因此,频谱效率可以比传统的DFT-S-SSB OFDM系统增加,并且BER(误码率)性能也可以提高。在所提出的DFT-S-SSB OFDM系统中,改进了DFT扩展SSB选择技术,从而可以选择USB(上边带)分量,并且通过所提出的SSB选择方法可以同时发送LSB和USB。尽管在这一建议的方法中,由于卷积编码和DFT扩展SSB改进,所提出的数据速率略有损失,所提出的系统可以通过所提出的SSB选择方法来提高光谱效率,可以通过卷积编码组合来改善BER性能。总之,我们可以使用所提出的系统提高通信能力和频率资源利用率。

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