Implementing high performance, low computation, IIR filters with 2-path recursive all-pass filters and the harris-sharpening filter
J. S. Harris
Abstract
J. S. Harris
Abstract
We present here two techniques to form high performance, low cost digital filters from a set of low cost, low performance, prototype filters. Here cost is related to number of arithmetic operations and performance is measured by depth of out-of-band spectral attenuation and shallowness of in-band spectral ripple. The two mechanisms that support this process are the cascading of two-path recursive all-pass filter which form high order prototype filters with a small number of coefficients and application of the harris sharpening filter which uses the prototype filter and an all-pass companion filter to compensate for the increase of in-band ripple levels due to the cascade of prototype filters.
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We present here two techniques to form high performance, low cost digital filters from a set of low cost, low performance, prototype filters. Here cost is related to number of arithmetic operations and performance is measured by depth of out-of-band spectral attenuation and shallowness of in-band spectral ripple. The two mechanisms that support this process are the cascading of two-path recursive all-pass filter which form high order prototype filters with a small number of coefficients and application of the harris sharpening filter which uses the prototype filter and an all-pass companion filter to compensate for the increase of in-band ripple levels due to the cascade of prototype filters.
Key concepts: Prototype filter, m-derived filter, High-pass filter, Sharpening, Adaptive filter, Filter design, Filter (signal processing), Network synthesis filters