Solutions to Three Conjectures and an Open Problem on Binary BCH Codes
Xiaoqiang Wang, Jiawei He, Boru Yi, Dabin Zheng
Abstract
BCH codes are among the most important classes of cyclic codes and have played a central role in coding theory and its applications. One of the fundamental problems in the study of BCH codes is to determine their exact minimum distances, which directly govern their error-correcting capability. Although the BCH bound provides a general lower bound, determining the exact minimum distance is often difficult, and many parameter families remain unresolved. In this paper, we investigate three conjectures and an open problem on binary BCH codes proposed by Chen, Xie, and Ding in Chen59. We settle these conjectures on the exact minimum distances of three families of binary BCH codes by constructing codewords attaining the BCH bound. Beyond these conjectures, we further study the more difficult family codes and determine its minimum distance for some cases. We further study Open Problem 8.4: affirmative answers are obtained for the first two length families, while for the third family a sufficient condition is established and a counterexample shows that the unrestricted assertion does not hold in general.
Create a lesson
Related papers
Agentic UE-CoMIMO for 6G Terminals: From Virtual Antenna Augmentation to AI-Native Virtualization
Chao-Kai Wen, Yen-Cheng Chan, Lung-Sheng Tsai et al.
Constraint-Preserving Genetic Algorithms for Embedding Linear Codes into Self-Orthogonal Codes
Haeun Lim, Junmin An, Jon-Lark Kim
Instance Optimal Sparse Recovery from Nonlinear Observations: A Unified Framework
Junren Chen, Arian Maleki
New binary optimal LCD codes using heuristic embedding
Haeun Lim, Junmin An, Jon-Lark Kim
ISAC with Co-Prime Arrays: Virtual-Aperture Sensing and uplink downlink communications
Jing Zhang, Yuxiao Liu, Jiayi Sun et al.
CRB-Guided Sensing and Resource Allocation for Human Pose Prediction in Integrated Sensing, Communication, and Computation Systems
Zhonghao Liu, Yahao Ding, Jiaxiang Wang et al.