Domain Adaptation of Deformable Part-Based Models

IEEE Trans. Pattern Anal. Mach. Intell.(2014)

引用 127|浏览79
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摘要
The accuracy of object classifiers can significantly drop when the training data (source domain) and the application scenario (target domain) have inherent differences. Therefore, adapting the classifiers to the scenario in which they must operate is of paramount importance. We present novel domain adaptation (DA) methods for object detection. As proof of concept, we focus on adapting the state-of-the-art deformable part-based model (DPM) for pedestrian detection. We introduce an adaptive structural SVM (A-SSVM) that adapts a pre-learned classifier between different domains. By taking into account the inherent structure in feature space (e.g., the parts in a DPM), we propose a structure-aware A-SSVM (SA-SSVM). Neither A-SSVM nor SA-SSVM needs to revisit the source-domain training data to perform the adaptation. Rather, a low number of target-domain training examples (e.g., pedestrians) are used. To address the scenario where there are no target-domain annotated samples, we propose a self-adaptive DPM based on a self-paced learning (SPL) strategy and a Gaussian Process Regression (GPR). Two types of adaptation tasks are assessed: from both synthetic pedestrians and general persons (PASCAL VOC) to pedestrians imaged from an on-board camera. Results show that our proposals avoid accuracy drops as high as 15 points when comparing adapted and non-adapted detectors.
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关键词
pedestrians,on-board camera,sa-ssvm,da methods,adaptation tasks,self-paced learning strategy,deformable part-based models,pedestrian detection,learning (artificial intelligence),regression analysis,self-adaptive dpm,adaptive structural svm,prelearned classifier,target-domain training examples,source-domain training data,synthetic pedestrians,object classifiers,gaussian process regression,image classification,domain adaptation methods,general persons,gaussian processes,object detection,structure-aware a-ssvm,application scenario,spl strategy,deformable part-based model,pascal voc,gpr,support vector machines,domain adaptation,detectors,accuracy,vectors
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