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Optimizing Pulse Shaping Filter for DOCSIS Systems

机译:为DOCSIS系统优化脉冲整形滤波器

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This paper proposes a cost efficient nearly linear phase approximation to an square root raised cosine (SRRC) pulse shaping filter that satisfies the out-of-band spectral constraints of DOCSIS down-stream channels. A nearly linear phase filter structure is converted to an SRRC filter using a weighted and sampled least-squares criterion to fit the magnitude and phase responses. To ensure stability, the search for optimum coefficients is constrained using the Steigliz–McBride (SM) and Gauss–Newton (GN) methods, which unfortunately also eliminates sets of stable coefficients, one of which could be and probably is the optimum. To expand the sets of coefficients that produce stable filters in the SM and GN methods, the transfer function is parameterized in a special way. The effectiveness of the proposed filter is verified and compared with other approaches.
机译:本文针对平方根升余弦(SRRC)脉冲整形滤波器提出了一种经济高效的近似线性相位近似算法,该滤波器可满足DOCSIS下行通道的带外频谱约束。使用加权和采样的最小二乘准则将近乎线性的相位滤波器结构转换为SRRC滤波器,以适应幅度和相位响应。为确保稳定性,使用Steigliz-McBride(SM)和Gauss-Newton(GN)方法限制了对最佳系数的搜索,不幸的是,这些方法也消除了一组稳定系数,其中一组可能是最佳系数。为了扩展在SM和GN方法中产生稳定滤波器的系数集,可以通过特殊方式对传递函数进行参数化。所提出的滤波器的有效性已得到验证,并与其他方法进行了比较。

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