IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing · 2023 · 39 citations · 44 references
Artificial IntelligenceScene AnalysisEngineeringMachine LearningNew Building DatasetMulti-image FusionDomain Generalization MethodBuilding TechnologyBuilding DesignSocial SciencesBuilding ExtractionBuilt EnvironmentImage ClassificationImage AnalysisData ScienceData MiningImage-based ModelingMachine VisionDesignBuilding Information ModellingDomain GeneralizationComputer ScienceComputer VisionArchitectural DesignBuilding PerformanceScene UnderstandingConstruction Management
In this paper, we introduce a new building dataset and propose a novel domain generalization method to facilitate the development of building extraction from high-resolution remote sensing images. The problem with the current building datasets involves that they lack diversity to train a practical learning model with good generalization ability, and the quality of the labels is unsatisfactory. To address these issues, we built a diverse, large-scale, and high-quality building dataset named the WHU-Mix building dataset, which is more practice-oriented. The WHU-Mix building dataset consists of a training/validation set containing 43,727 diverse images collected from all over the world, and a test set containing 8402 images from five other cities on five continents. In addition, to further improve the generalization ability of a building extraction model, we propose a domain generalization method named batch style mixing (BSM), which can be embedded as an efficient plug-and-play module in the front-end of a building extraction model, providing the model with a progressively larger data distribution to learn data-invariant knowledge. The experiments conducted in this study confirmed the potential of the WHU-Mix building dataset to improve the performance of a building extraction model, resulting in a 6–36% improvement in mIoU, compared to the other existing datasets. The adverse impact of the inaccurate labels in the other datasets can cause about 20% IoU decrease. The experiments also confirmed the high performance of the proposed BSM module in enhancing the generalization ability and robustness of a model, exceeding the baseline model without domain generalization by 13% and the recent domain generalization methods by 4–15% in mIoU.
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