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On the use of interpolated second-order polynomials for efficient filter design in programmable downconversion

机译:关于使用内插二阶多项式进行可编程下变频中的有效滤波器设计

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摘要

Interpolated second-order polynomials (ISOPs) are proposed to design efficient cascaded integrator-comb (CIC)-based decimation filters for a programmable downconverter. It is shown that some simple ISOPs can effectively reduce the passband droop caused by CIC filtering with little degradation in aliasing attenuation. In addition, ISOPs are shown to be useful for simplifying halfband filters that usually follow CIC filtering. As a result, a modified halfband filter (MHBF) is introduced which is simpler than conventional halfband filters. The proposed decimation filter for programmable downconverter is a cascade of a CIC filter, an ISOP, MHBFs, and a programmable finite impulse response filter. A procedure for designing the decimation filter is developed. In particular, an optimization technique that simultaneously designs the ISOP and programmable FIR filters is presented. Design examples demonstrate that the proposed method leads to more efficient programmable downconverters than existing ones.
机译:提出了插值二阶多项式(ISOP),以为可编程下变频器设计基于有效级联积分梳形(CIC)的抽取滤波器。结果表明,一些简单的ISOP可以有效地减少由CIC滤波引起的通带下降,而混叠衰减几乎没有下降。此外,已证明ISOP对于简化通常在CIC滤波之后的半带滤波器很有用。结果,引入了比常规半带滤波器更简单的改进半带滤波器(MHBF)。提出的用于可编程下变频器的抽取滤波器是CIC滤波器,ISOP,MHBF和可编程有限脉冲响应滤波器的级联。开发了设计抽取滤波器的过程。特别是,提出了一种同时设计ISOP和可编程FIR滤波器的优化技术。设计实例表明,与现有的方法相比,该方法可产生更高效率的可编程下变频器。

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