Robust maritime obstacle detection is critical for safe navigation of autonomous boats and timely collision avoidance. The current state-of-the-art is based on deep segmentation networks trained on large datasets. However, per-pixel ground truth labeling of such datasets is labor-intensive and expensive. We propose a new scaffolding learning regime (SLR) that leverages weak annotations consisting of water edges, the horizon location, and obstacle bounding boxes to train segmentation-based obstacle detection networks, thereby reducing the required ground truth labeling effort by a factor of twenty. SLR trains an initial model from weak annotations and then alternates between re-estimating the segmentation pseudo-labels and improving the netw...
This paper introduces a novel deep learning approach to semantic segmentation of the shoreline envir...
In this article we present the state of the art in the field of autonomous surface ship navigation u...
Knowledge on adversaries during military missions at sea heavily influences decision making, making ...
Robust maritime obstacle detection is critical for safe navigation of autonomous boats and timely co...
Unmanned surface vehicles (USVs) are receiving increasing attention in recent years from both academ...
Machine learning and specifically deep learning techniques address many of the issues faced in visua...
Visual-based obstacle detection from an autonomous surface vessel (ASV) is a complex task due to hi...
This paper presents two novel approaches for improving image-based underwater obstacle detection by ...
Robust maritime obstacle detection is essential for fully autonomous unmanned surface vehicles (USVs...
In the last decade, the autonomous vehicle has been investigated by both academia and industry. One ...
Waterline detection in images captured from a moving camera mounted on an autonomous boat is a compl...
The recent successes in computer vision have been mostly around using a huge corpus of intricately l...
Accurate detection of sea-surface objects is vital for the safe navigation of autonomous ships. With...
The use of Deep learning techniques in the field of Marine Science has become popular in recent year...
This paper introduces a novel deep learning approach to semantic segmentation of the shoreline envir...
This paper introduces a novel deep learning approach to semantic segmentation of the shoreline envir...
In this article we present the state of the art in the field of autonomous surface ship navigation u...
Knowledge on adversaries during military missions at sea heavily influences decision making, making ...
Robust maritime obstacle detection is critical for safe navigation of autonomous boats and timely co...
Unmanned surface vehicles (USVs) are receiving increasing attention in recent years from both academ...
Machine learning and specifically deep learning techniques address many of the issues faced in visua...
Visual-based obstacle detection from an autonomous surface vessel (ASV) is a complex task due to hi...
This paper presents two novel approaches for improving image-based underwater obstacle detection by ...
Robust maritime obstacle detection is essential for fully autonomous unmanned surface vehicles (USVs...
In the last decade, the autonomous vehicle has been investigated by both academia and industry. One ...
Waterline detection in images captured from a moving camera mounted on an autonomous boat is a compl...
The recent successes in computer vision have been mostly around using a huge corpus of intricately l...
Accurate detection of sea-surface objects is vital for the safe navigation of autonomous ships. With...
The use of Deep learning techniques in the field of Marine Science has become popular in recent year...
This paper introduces a novel deep learning approach to semantic segmentation of the shoreline envir...
This paper introduces a novel deep learning approach to semantic segmentation of the shoreline envir...
In this article we present the state of the art in the field of autonomous surface ship navigation u...
Knowledge on adversaries during military missions at sea heavily influences decision making, making ...