Iterative Decoding Performance Bounds for LDPC Codes on Noisy Channels
Chun-Hao Hsu, Achilleas Anastasopoulos
Abstract
The asymptotic iterative decoding performances of low-density parity-check (LDPC) codes using min-sum (MS) and sum-product (SP) decoding algorithms on memoryless binary-input output-symmetric (MBIOS) channels are analyzed in this paper. For MS decoding, the analysis is done by upper bounding the bit error probability of the root bit of a tree code by the sequence error probability of a subcode of the tree code assuming the transmission of the all-zero codeword. The result is a recursive upper bound on the bit error probability after each iteration. For SP decoding, we derive a recursively determined lower bound on the bit error probability after each iteration. This recursive lower bound recovers the density evolution equation of LDPC codes on the binary erasure channel (BEC) with inequalities satisfied with equalities. A significant implication of this result is that the performance of LDPC codes under SP decoding on the BEC is an upper bound of the performance on all MBIOS channels with the same uncoded bit error probability. All results hold for the more general multi-edge type LDPC codes.
Create a lesson
Related papers
An Explicit Family of Log-Concave Counterexamples to the Gaussian Completely Monotone Conjecture
Jiayang Zou, Luyao Fan, Jiayang Gao et al.
Strengthening Recursive Constructions for Zero-Error Shannon Capacity
Ravi Tandon
Fluid Antenna Multiple Access for Noise Modulation
Hadi Zayyani, Felipe A. P. de Figueiredo
The generalized covering radii of Melas codes
Shuxing Li, Maosheng Xiong
Efficient Polynomial-Time Decoding of Simplicial Anticodes with Near-Optimal Performance
Antonio Jesús Lorite-López, Daniel Camazón-Portela, Juan Antonio López-Ramos
Multi-Access Speculative Inference: Uplink or Downlink?
Chang Cai, Kaibin Huang