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首页> 外文期刊>Communications, IET >Spectrum sidelobe suppression for discrete Fourier transformation-based orthogonal frequency division multiplexing using adjacent subcarriers correlative coding
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Spectrum sidelobe suppression for discrete Fourier transformation-based orthogonal frequency division multiplexing using adjacent subcarriers correlative coding

机译:相邻副载波相关编码的基于离散傅里叶变换的正交频分复用频谱旁瓣抑制

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The large spectrum sidelobes of orthogonal frequency division multiplexing (OFDM) signal lead to the interference with the licensed user working on the adjacent band in spectrum pooling. The power spectral leakage of discrete Fourier transformation (DFT)-based OFDM systems can be divided into two parts, in-band-out-of-subband (IBOSB) spectral leakage and out-of-band (OOB) spectral leakage. A correlative coding technique is proposed to suppress the IBOSB leakage and redistribute the OOB leakage of DFT-based OFDM signal through the subcarrier coding in the frequency domain with appropriate weighting. The correlation is introduced between adjacent subcarriers and mutual cancellation of the spectrum sidelobes reshapes the spectrum of DFT-based OFDM signal. The optimum weighting factor is obtained through optimisation. Analytical results and simulation show that the proposed coding scheme significantly suppresses the IBOSB leakage in contrast with the common OFDM system and introduces least interference with the licensed user. Furthermore, the carrier-interference ratio (CIR) of OFDM system with correlative coding increases by 3 dB. At the same time, maximum likelihood sequence detection (MLSD) can mostly compensate the bit error rate (BER) degradation caused by error propagation at the expense of introducing a little computation complexity.
机译:正交频分复用(OFDM)信号的大频谱旁瓣导致对频谱池中相邻频带上工作的许可用户的干扰。基于离散傅里叶变换(DFT)的OFDM系统的功率谱泄漏可分为两部分:带内带外(OBOSB)谱泄漏和带外(OOB)谱泄漏。提出了一种相关编码技术,通过适当的加权,通过频域中的子载波编码来抑制IBOSB泄漏,并重新分配基于DFT的OFDM信号的OOB泄漏。在相邻子载波之间引入相关性,并且频谱旁瓣的相互抵消重塑了基于DFT的OFDM信号的频谱。最佳加权因子是通过优化获得的。分析结果和仿真结果表明,与常见的OFDM系统相比,所提出的编码方案显着抑制了IBOSB泄漏,并且对许可用户的干扰最小。此外,具有相关编码的OFDM系统的载波干扰比(CIR)增加了3 dB。同时,最大似然序列检测(MLSD)可以最大程度地补偿由于错误传播而导致的误码率(BER)下降,但以引入少量计算复杂性为代价。

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