Error Floor Analysis of LDPC Column Layered Decoders

07/23/2021
by   Ali Farsiabi, et al.
0

In this paper, we analyze the error floor of column layered decoders, also known as shuffled decoders, for low-density parity-check (LDPC) codes under saturating sum-product algorithm (SPA). To estimate the error floor, we evaluate the failure rate of different trapping sets (TSs) that contribute to the frame error rate in the error floor region. For each such TS, we model the dynamics of SPA in the vicinity of the TS by a linear state-space model that incorporates the information of the layered message-passing schedule. Consequently, the model parameters and the failure rate of the TS change as a result of the change in the order by which the messages of different layers are updated. This, in turn, causes the error floor of the code to change as a function of scheduling. Based on the proposed analysis, we then devise an efficient search algorithm to find a schedule that minimizes the error floor. Simulation results are presented to verify the accuracy of the proposed error floor estimation technique.

READ FULL TEXT
research
04/14/2021

Error Floor Analysis of LDPC Row Layered Decoders

In this paper, we analyze the error floor of quasi-cyclic (QC) low-densi...
research
04/19/2021

FPGA Implementations of Layered MinSum LDPC Decoders Using RCQ Message Passing

Non-uniform message quantization techniques such as reconstruction-compu...
research
12/05/2022

Low-Resolution Horizontal and Vertical Layered Mutual Information Maximizing LDPC Decoding

We investigate iterative low-resolution message-passing algorithms for q...
research
11/07/2019

Performance Bounds and Estimates for Quantized LDPC Decoders

The performance of low-density parity-check (LDPC) codes at high signal-...
research
08/27/2022

Parity-Check Matrix Partitioning for Efficient Layered Decoding of QC-LDPC Codes

In this paper, we consider how to partition the parity-check matrices (P...
research
02/19/2019

Construction of QC-LDPC Codes with Low Error Floor by Efficient Systematic Search and Elimination of Trapping Sets

We propose a systematic design of protograph-based quasi-cyclic (QC) low...
research
04/23/2019

A Refined Scaling Law for Spatially Coupled LDPC Codes Over the Binary Erasure Channel

We propose a refined scaling law to predict the finite-length performanc...

Please sign up or login with your details

Forgot password? Click here to reset