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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Improved Filter Bank Approach for the Design of Variable Bandedge and Fractional Delay Filters
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Improved Filter Bank Approach for the Design of Variable Bandedge and Fractional Delay Filters

机译:改进的滤波器组方法,用于可变带宽和分数延迟滤波器的设计

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摘要

The paper proposes an optimization technique for the design of variable digital filters with simultaneously tunable bandedge and fractional delay using a fast filter bank (FFB) approach. In the FFB approach, full band signals are split into multibands, and each band is multiplied by a proper phase shift to realize the variable fractional delay. In the proposed technique, in the formulation of the optimization of the 0th stage prototype filter of the FFB, the ripples of the filters in the subsequent stages are all taken into consideration. In addition, a shaping filter is applied to the last retained band of the FFB to form the transition band of the variable filter, such that the transition width of each band in the FFB can be relaxed to reduce the computational complexity. In total three shaping filters, constructed from a prototype filter, can be shared by different bands, so that the extra cost incurred due to the shaping filter is low.
机译:本文提出了一种优化技术,用于使用快速滤波器组(FFB)方法设计具有同时可调的带宽和分数延迟的可变数字滤波器。在FFB方法中,将全频带信号分为多个频带,然后将每个频带乘以适当的相移以实现可变的分数延迟。在所提出的技术中,在设计FFB的第0级原型滤波器的优化时,都考虑了后级滤波器的纹波。另外,将整形滤波器应用于FFB的最后保留的带以形成可变滤波器的过渡带,使得可以放宽FFB中的每个带的过渡宽度以降低计算复杂度。由原型滤波器构成的总共三个整形滤波器可以由不同的频带共享,因此,由于整形滤波器而导致的额外成本较低。

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