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Author

Chaoyun Mai

4 papers indexed here

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Conference Aug 2026

STDFNet: A Symmetric Temporal Difference and Multi-Scale Context Gating Network for Remote Sensing Change Detection

High-resolution remote sensing change detection must distinguish genuine changes from pseudo-changes caused by misregistration, illumination, and texture variations. We propose STDFNet, a lightweight Symmetric Temporal Difference and Multi-Scale Context Gating Network. A shared MobileNetV2 extracts four-level bi-tempor...

Chong-Yi Huang, Jia-Shuo Li, Pan-Rong Chen et al. · 0 citations
Conference Aug 2026

TDBRNet: A Lightweight Bi-Temporal Difference Modeling and Boundary Refinement Network for Remote Sensing Change Detection

Remote sensing change detection requires accurate localization of changes in high-resolution bi-temporal imagery while maintaining a compact computational footprint. Existing lightweight methods often rely on simple absolute differencing and progressive upsampling, which may lead to pseudo-changes, blurred boundaries,...

Yu-Wei Han, Zhi-Yuan Su, Jia-Shuo Li et al. · 0 citations
Conference Aug 2026

Lightweight Cross-Temporal Gating Network for Remote Sensing Change Detection

Accurate remote sensing change detection requires separating genuine land-cover changes from appearance variations while retaining small objects and boundaries. This paper presents a Lightweight Cross-Temporal Gating Network (LCTGNet), a compact Siamese convolutional model for bi-temporal images. A single shared Mobile...

Hao Xie, Chao-Xu Liang, Hong-Fan Lin et al. · 0 citations
Open access 2026

SeCoR: Evidence-Guided Selective Correction for Lightweight Remote Sensing Change Detection

Remote sensing change detection (RSCD) aims to identify land-cover changes from bitemporal images and is widely used in urban monitoring, disaster assessment, and land-resource analysis. Lightweight RSCD models usually rely on compact backbones and efficient temporal interaction, but most of them update bitemporal feat...

Chaoyun Mai, Hai-Peng He, Hao Xie et al. · 0 citations

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