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DIAL: Deep Interactive and Active Learning for Semantic Segmentation in Remote Sensing

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arxiv 2201.01047 v1 pith:X3K7P2QE submitted 2022-01-04 cs.CV eess.IV

classification cs.CVeess.IV
keywords networklearninguseractiveannotationsdeepneuralpropose
verification ladder T0 review T1 audit T2 compute T3 formal
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We propose in this article to build up a collaboration between a deep neural network and a human in the loop to swiftly obtain accurate segmentation maps of remote sensing images. In a nutshell, the agent iteratively interacts with the network to correct its initially flawed predictions. Concretely, these interactions are annotations representing the semantic labels. Our methodological contribution is twofold. First, we propose two interactive learning schemes to integrate user inputs into deep neural networks. The first one concatenates the annotations with the other network's inputs. The second one uses the annotations as a sparse ground-truth to retrain the network. Second, we propose an active learning strategy to guide the user towards the most relevant areas to annotate. To this purpose, we compare different state-of-the-art acquisition functions to evaluate the neural network uncertainty such as ConfidNet, entropy or ODIN. Through experiments on three remote sensing datasets, we show the effectiveness of the proposed methods. Notably, we show that active learning based on uncertainty estimation enables to quickly lead the user towards mistakes and that it is thus relevant to guide the user interventions.

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  1. Active Learning with Context Sampling and One-vs-Rest Entropy for Semantic Segmentation

    cs.CV 2024-12 conditional novelty 5.0 of 10

    OREAL improves patch-based active learning for semantic segmentation by scoring superpixels with their maximum pixel uncertainty and using one-vs-rest entropy to balance classes.

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