Md Moniruzzaman - Academia.edu (original) (raw)

Md Moniruzzaman

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Papers by Md Moniruzzaman

Research paper thumbnail of Long future frame prediction using optical flow‐informed deep neural networks for enhancement of robotic teleoperation in high latency environments

Journal of Field Robotics

Research paper thumbnail of Deep Learning on Underwater Marine Object Detection: A Survey

Deep learning, also known as deep machine learning or deep structured learning based techniques, ... more Deep learning, also known as deep machine learning or deep structured learning based techniques, have recently achieved tremendous success in digital image processing for object detection and classification. As a result, they are rapidly gaining popularity and attention from the computer vision research community. There has been a massive increase in the collection of digital imagery for the monitoring of underwater ecosystems, including seagrass meadows. This growth in image data has driven the need for automatic detection and classification using deep neural network based classifiers. This paper systematically describes the use of deep learning for underwater imagery analysis within the recent past. The analysis approaches are categorized according to the object of detection , and the features and deep learning architectures used are highlighted. It is concluded that there is a great scope for automation in the analysis of digital sea-bed imagery using deep neural networks, especially for the detection and monitoring of seagrass.

Research paper thumbnail of Long future frame prediction using optical flow‐informed deep neural networks for enhancement of robotic teleoperation in high latency environments

Journal of Field Robotics

Research paper thumbnail of Deep Learning on Underwater Marine Object Detection: A Survey

Deep learning, also known as deep machine learning or deep structured learning based techniques, ... more Deep learning, also known as deep machine learning or deep structured learning based techniques, have recently achieved tremendous success in digital image processing for object detection and classification. As a result, they are rapidly gaining popularity and attention from the computer vision research community. There has been a massive increase in the collection of digital imagery for the monitoring of underwater ecosystems, including seagrass meadows. This growth in image data has driven the need for automatic detection and classification using deep neural network based classifiers. This paper systematically describes the use of deep learning for underwater imagery analysis within the recent past. The analysis approaches are categorized according to the object of detection , and the features and deep learning architectures used are highlighted. It is concluded that there is a great scope for automation in the analysis of digital sea-bed imagery using deep neural networks, especially for the detection and monitoring of seagrass.

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