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Area and Power Efficient Fixed Point LMS Adaptive Filter using Ripple Carry Adder


 

The area and power efficiency is very important for every circuit and its applications.  Here we we present an efficient architecture for the implementation of a delayed least mean square adaptive filter. By using improved adder structure the area power efficiency can be increased. with this the area delay product (ADP) and energy delay product(EDP) can be saved in a considerable amount. Ripple carry adder is used here and the main advantages are lower power consumption as well as compact layout giving smaller chip area..


Keywords

Adders, Adaptive filter, LMS algorithm, fixed point arithmetic
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  • Area and Power Efficient Fixed Point LMS Adaptive Filter using Ripple Carry Adder

Abstract Views: 167  |  PDF Views: 2

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Abstract


The area and power efficiency is very important for every circuit and its applications.  Here we we present an efficient architecture for the implementation of a delayed least mean square adaptive filter. By using improved adder structure the area power efficiency can be increased. with this the area delay product (ADP) and energy delay product(EDP) can be saved in a considerable amount. Ripple carry adder is used here and the main advantages are lower power consumption as well as compact layout giving smaller chip area..


Keywords


Adders, Adaptive filter, LMS algorithm, fixed point arithmetic