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Efficient prototype filter design for Filter Bank Multicarrier (FBMC) System based on Ambiguity function analysis of Hermite polynomials

机译:基于Hermite多项式模糊函数分析的滤波器组多载波(FBMC)系统高效原型滤波器设计

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摘要

Filter Bank Multicarrier (FBMC) is emerging as a better alternative to the Orthogonal Frequency Division Multiplexing (OFDM) in next generation wireless multicarrier systems. For robust performance under doubly dispersive channels, the prototype filter in FBMC systems must be isotropic and orthogonal in time and frequency. The existing design methods for prototype filter design are the Extended Gaussian Function (EGF) design based on Zak transform and Weighted HermitePulse (WHP) design. In this paper, it is attempted to design the prototype filter by performing time frequency analysis on the Ambiguity function of isotropic Hermite pulses. The Filter coefficients are obtained as the weighted sum of the Hermite pulses and constrained optimization is performed to find out the weights. An alternative objective function and optimization procedure is used in the present study which yield better results compared to conventional WHP problem. The orthogonality and isotropic conditions of the designed filter is compared with the conventional filters using Ambiguity plots.
机译:滤波器组多载波(FBMC)逐渐成为下一代无线多载波系统中正交频分复用(OFDM)的更好替代方案。为了在双色散信道下具有强大的性能,FBMC系统中的原型滤波器必须是各向同性的,并且在时间和频率上是正交的。用于原型滤波器设计的现有设计方法是基于Zak变换的扩展高斯函数(EGF)设计和加权HermitePulse(WHP)设计。本文试图通过对各向同性Hermite脉冲的模糊函数进行时频分析来设计原型滤波器。获得滤波器系数作为Hermite脉冲的加权和,并执行约束优化以找出权重。本研究中使用了替代目标函数和优化程序,与常规WHP问题相比,该方法产生了更好的结果。使用模糊度图将设计滤波器的正交性和各向同性条件与常规滤波器进行比较。

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