High-performance adaptive decision feedback equalizer based on predictive parallel branch slicer scheme
Resource
Signal Processing Systems, 2002. (SIPS '02). IEEE Workshop on
Journal
IEEE Workshop on Signal Processing Systems, SiPS: Design and Implementation
Journal Volume
2002-January
Pages
121-126
Date Issued
2002-10
Date
2002-10
Author(s)
Yang, Meng-Da
DOI
1520-6130
Abstract
Among the existing works of high-speed pipelined Adaptive Decision Feedback Equalizer (ADFE), the pipelined ADFE using the relaxed look-ahead technique results in a substantial hardware saving than the parallel processing or Look-ahead approaches. However, it suffers from both the SNR degradation and slow convergence rate. In this paper, we employ the Predictive Parallel Branch Slicer (PPBS) to eliminate the dependencies of the present and past decisions so as to reduce the iteration bound of Decision Feedback Loop of the ADFE. By adding negligible hardware complexity overheads, the proposed architecture can help to improve the output Mean-square-error (MSE) of the ADFE compared with the Relaxed Look-ahead ADFE architecture. Moreover, we show the superior performance of the proposed pipelined ADFE by theoretical derivations and computer simulation results.
Type
conference paper
File(s)![Thumbnail Image]()
Loading...
Name
01049696.pdf
Size
572.53 KB
Format
Adobe PDF
Checksum
(MD5):6762c078195bb23361b994e2059a8d7e
