activity
20242026
most citedGranular-ball computing: an efficient, robust, and interpretable adaptive multi-granularity representation and computation method

5 citations · 5 across the 2 of their papers we have counts for

collaborators

14 papers

cs.LG2026

Adaptive Nearest Neighbors Classifier via Granular Ball Computing

Xiaoyu Lian, Shuyin Xia, Hongxuan He +3

The -Nearest Neighbor~(KNN) algorithm is widely used across various tasks. The selection of the value is a key issue because it significantly impacts performance. In this pa…

cs.LG20265 cited

Granular-ball computing: an efficient, robust, and interpretable adaptive multi-granularity representation and computation method

Shuyin Xia, Guoyin Wang, Xinbo Gao +2

To overcome the limitations of point-based inputs, overly fine computation and limited adaptability in existing artificial intelligence methods, Guoyin Wang and Shuyin Xia proposed…

cs.LG2026

Efficient and Scalable Granular-ball Graph Coarsening Method for Large-scale Graph Node Classification

Guan Wang, Shuyin Xia, Lei Qian +4

Graph Convolutional Network (GCN) is a model that can effectively handle graph data tasks and has been successfully applied. However, for large-scale graph datasets, GCN still face…

cs.CV2026

Square Superpixel Generation and Representation Learning via Granular Ball Computing

Shuyin Xia, Meng Yang, Dawei Dai +6

Superpixels provide a compact region-based representation that preserves object boundaries and local structures, and have therefore been widely used in a variety of vision tasks to…

cs.CV2026

Implicit Non-Causal Factors are Out via Dataset Splitting for Domain Generalization Object Detection

Zhilong Zhang, Lei Zhang, Qing He +3

Open world object detection faces a significant challenge in domain-invariant representation, i.e., implicit non-causal factors. Most domain generalization (DG) methods based on do…

cs.LG2025

GBSK: Skeleton Clustering via Granular-ball Computing and Multi-Sampling for Large-Scale Data

Yewang Chen, Junfeng Li, Shuyin Xia +6

To effectively handle clustering task for large-scale datasets, we propose a novel scalable skeleton clustering algorithm, namely GBSK, which leverages the granular-ball technique…