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A Square-Root Nyquist (M) Filter Design for Digital Communication Systems

机译:用于数字通信系统的平方根奈奎斯特(M)滤波器设计

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Designing matched transmit and receive filters whose combination satisfies the Nyquist condition is a classical problem in digital communication systems. In this correspondence, we propose a novel method for designing such filters. The proposed method is based on a cost function whose minimization leads to designs that can strike a balance between the stopband attenuation, the residual intersymbol interference (ISI), robust sensitivity to timing jitter, and/or reduced peak-to-average power ratio (PAR). An iterative algorithm for optimizing the proposed cost function is suggested and its excellent performance is shown by presenting a variety of design examples. Compared to the published works, the proposed method offers the following unique advantages. By introducing a symmetry in the filter coefficients, filters with reduced computational complexity can be designed. We also introduce a design parameter that allows one to strike a balance between the PAR and other features of the desired filter.
机译:设计其组合满足奈奎斯特条件的匹配的发送和接收滤波器是数字通信系统中的经典问题。在这种对应关系中,我们提出了一种设计这种滤波器的新颖方法。所提出的方法基于成本函数,其成本最小化导致设计可以在阻带衰减,残留符号间干扰(ISI),对时序抖动的鲁棒灵敏度和/或降低的峰均功率比( PAR)。提出了一种用于优化建议的成本函数的迭代算法,并通过给出各种设计示例展示了其出色的性能。与已发表的作品相比,该方法具有以下独特的优势。通过在滤波器系数中引入对称性,可以设计出计算复杂度降低的滤波器。我们还引入了一种设计参数,该参数可以在PAR和所需滤波器的其他功能之间取得平衡。

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