Open Access Open Access  Restricted Access Subscription Access

VLSI Implementation of Fixed-Point LMS Adaptive Filter with Low Adaptation Delay


Affiliations
1 PSNA College of Engineering and Technology, Dindigul, India
 

This paper presents the modified delayed LMS adaptive filter consists of Weight update block with Partial Product Generator (PPG) to achieve a lower adaptation delay and efficient area, power, delay. To achieve lower adaptation delay, initially the transpose form LMS adaptive filter is designed but the output contains large delay due to its inner product process. Here, the pipelining structure is proposed across the time consuming combinational blocks of the structure to reduce the critical path. From the simulation results, we find that the proposed design offers large efficient output comprises the existing output with large complexities.

Keywords

Partial Product Generator, Weight Update Block, Modified DLMS Adaptive Filter.
User
Notifications
Font Size

Abstract Views: 111

PDF Views: 0




  • VLSI Implementation of Fixed-Point LMS Adaptive Filter with Low Adaptation Delay

Abstract Views: 111  |  PDF Views: 0

Authors

C. Preethi
PSNA College of Engineering and Technology, Dindigul, India
M. Praveena
PSNA College of Engineering and Technology, Dindigul, India

Abstract


This paper presents the modified delayed LMS adaptive filter consists of Weight update block with Partial Product Generator (PPG) to achieve a lower adaptation delay and efficient area, power, delay. To achieve lower adaptation delay, initially the transpose form LMS adaptive filter is designed but the output contains large delay due to its inner product process. Here, the pipelining structure is proposed across the time consuming combinational blocks of the structure to reduce the critical path. From the simulation results, we find that the proposed design offers large efficient output comprises the existing output with large complexities.

Keywords


Partial Product Generator, Weight Update Block, Modified DLMS Adaptive Filter.