像素
分割
人工智能
计算机科学
残余物
图像分割
模式识别(心理学)
背景(考古学)
训练集
目标检测
集合(抽象数据类型)
计算机视觉
地理
算法
考古
程序设计语言
作者
Yuyuan Liu,Choubo Ding,Yu Tian,Guansong Pang,Vasileios Belagiannis,Ian Reid,Gustavo Carneiro
标识
DOI:10.1109/iccv51070.2023.00112
摘要
Semantic segmentation models classify pixels into a set of known ("in-distribution") visual classes. When deployed in an open world, the reliability of these models depends on their ability to not only classify in-distribution pixels but also to detect out-of-distribution (OoD) pixels. Historically, the poor OoD detection performance of these models has motivated the design of methods based on model re-training using synthetic training images that include OoD visual objects. Although successful, these re-trained methods have two issues: 1) their in-distribution segmentation accuracy may drop during re-training, and 2) their OoD detection accuracy does not generalise well to new contexts outside the training set (e.g., from city to country context). In this paper, we mitigate these issues with: (i) a new residual pattern learning (RPL) module that assists the segmentation model to detect OoD pixels with minimal deterioration to inlier segmentation accuracy; and (ii) a novel context-robust contrastive learning (CoroCL) that enforces RPL to robustly detect OoD pixels in various contexts. Our approach improves by around 10% FPR and 7% AuPRC previous state-of-the-art in Fishyscapes, Segment-Me-If-You-Can, and RoadAnomaly datasets.
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