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The design of digital quadrature demodulators using the Parks-McClellan algorithm

机译:使用Parks-McClellan算法设计数字正交解调器

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New results are presented concerning the design of digital quadrature demodulators based on quadrature mixing and lowpass filtering concepts. The use of a 4:1 ratio between the sampling rate and intermediate frequency reduces the computational cost, but also causes the inphase and quadrature filters to become odd and even length filters, respectively. Consequently, the mismatch between the passband gains of the filters becomes an important source of error. The performance data presented in this paper shows that the Parks-McClellan (1973) algorithm can be used to design pairs of I and Q filters whose passband frequency responses are closely matched relative to the size of the passband ripple. However, this favourable result is dependent on the choice of the design specification and the number of filter coefficients.
机译:提出了有关基于正交混频和低通滤波概念的数字正交解调器设计的新结果。在采样率和中频之间使用4:1的比率可降低计算成本,但也会使同相和正交滤波器分别变为奇数和偶数长度的滤波器。因此,滤波器的通带增益之间的失配成为重要的误差源。本文提供的性能数据表明,Parks-McClellan(1973)算法可用于设计I和Q滤波器对,它们的通带频率响应与通带纹波的大小紧密匹配。但是,这种良好的结果取决于设计规范的选择和滤波器系数的数量。

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