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Optimization of FBMC Waveform by Designing NPR Prototype Filter with Improved Stopband Suppression

机译:通过设计NPR原型滤波器优化FBMC波形,具有改进的阻带抑制

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In comparison with orthogonal frequency division multiplexing (OFDM), the filter bank multicarrier (FBMC) can reduce the out-of-band emissions through well-designed prototype filters, e.g., the isotropic orthogonal transform algorithm. Accordingly, this paper investigates a design method of nearly perfect reconstruction (NPR) prototype filter to effectively achieve both the filter flexibility and the FBMC frequency selectivity, in which the Nyquist condition can be linearly constrained by using the filter autocorrelation coefficients, and then, the spectral factorization aimed at minimum stopband energy is applied to retrieve the final prototype filter. The computer results show advantages over conventional ones in terms of sidelobe suppression, especially in the region near the transition band. Such advantages finally result in bit-error-rate (BER) superiority in FBMC simulations, which definitely confirms the effectiveness of the proposed design method for NPR prototype filter. Moreover, we also study the coefficient quantization and length reduction of the proposed NPR prototype filter. Fortunately, the quantized NPR filter can preserve its advantage on sidelobe suppression as well as BER. Besides, the proposed filter can produce BER results comparative to the PHYDYAS filter, although our filter length is much smaller than that of the PHYDYAS filter. Finally, these positive results demonstrate that the proposed method can benefit the FBMC applications in terms of flexible performance and simplified complexity.
机译:与正交频分复用(OFDM)相比,滤波器组多载波(FBMC)可以通过设计良好设计的原型滤波器,例如各向同性正交变换算法来减少带外排放。因此,本文研究了几乎完美的重建(NPR)原型滤波器的设计方法,以有效地实现滤波灵活性和FBMC频率选择性,其中奈奎斯特状况可以通过使用滤波器自相关系数来线性约束,然后施加频谱分子,用于检索最终的原型滤波器。计算机结果表明,在侧链抑制方面,特别是在侧瓣抑制方面的优点,特别是在过渡带附近的区域。这种优点最终导致FBMC仿真中的误码率(BER)优势,这绝对证实了NPR原型滤波器所提出的设计方法的有效性。此外,我们还研究了所提出的NPR原型过滤器的系数量化和长度降低。幸运的是,量化的NPR滤波器可以保持其在侧链抑制以及BER上的优势。此外,所提出的过滤器可以产生与Phydyas过滤器的BER结果相比,尽管我们的过滤器长度远小于Phydyas滤波器的滤波器。最后,这些阳性结果表明,该方法可以在灵活的性能和简化复杂性方面使FBMC应用受益。

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