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A Systematic Technique for Designing Linear-Phase FIR Prototype Filters for Perfect-Reconstruction Cosine-Modulated and Modified DFT Filterbanks

机译:设计用于完美重构余弦调制和修正DFT滤波器组的线性FIR原型滤波器的系统技术

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This paper describes a systematic technique for designing prototype filters for generating perfect-reconstruction (PR) orthogonal cosine-modulated and modified discrete Fourier transform filterbanks. In the proposed design scheme, the stopband energy of the prototype filter is minimized, and the basic unknowns are the angles of a special lattice structure used for implementing the prototype filter so that the PR property is automatically satisfied independent of the angle values. This selection of the unknowns makes the overall optimization problem unconstrained. Due to the fact that there are several local optima, the design is performed in multiple steps in order to arrive at least at a very good suboptimal solution. First, for the given number of channels, the length of the channel filters, and the stopband edge of the prototype filter, the corresponding two-channel filterbank is designed based on the preoptimized data. Then, after knowing the angles for the optimized two-channel case, the prototype filter for the desired filterbank is generated by gradually increasing the number of channels and by properly using the result of the previous step as a start-up solution for the present step. The main benefit of the proposed design technique is that it enables one to effectively design prototype filters for filterbanks with very high-order analysis and synthesis filters.
机译:本文介绍了一种系统技术,用于设计原型滤波器,以生成完美重构(PR)正交余弦调制和改进的离散傅里叶变换滤波器组。在提出的设计方案中,原型滤波器的阻带能量被最小化,基本的未知数是用于实现原型滤波器的特殊晶格结构的角度,从而自动满足PR特性,而与角度值无关。未知数的选择使整个优化问题不受限制。由于存在多个局部最优的事实,因此在多个步骤中执行设计,以便至少获得非常好的次优解决方案。首先,对于给定的通道数,通道滤波器的长度以及原型滤波器的阻带边缘,根据预优化的数据设计相应的两通道滤波器组。然后,在了解了优化的两通道情况的角度之后,通过逐渐增加通道数量并适当地使用上一步的结果作为当前步骤的启动解决方案,生成所需滤波器组的原型滤波器。所提出的设计技术的主要优点在于,它使人们能够有效地为具有非常高阶分析和合成滤波器的滤波器组设计原型滤波器。

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