FasterMDE: A real-time monocular depth estimation search method that balances accuracy and speed on the edge
Author:
Publisher
Springer Science and Business Media LLC
Subject
Artificial Intelligence
Link
https://link.springer.com/content/pdf/10.1007/s10489-023-04872-2.pdf
Reference63 articles.
1. Liu J, Li Q, Cao R, Tang W, Qiu G (2020) Mininet: An extremely lightweight convolutional neural network for real-time unsupervised monocular depth estimation. ISPRS J Photogramm Remote Sens 166:255–267477
2. Zhang Z, Wang Y, Huang Z, Luo G, Yu G, Fu B (2021) A simple baseline for fast and accurate depth estimation on mobile devices. In: Computer vision and pattern recognition
3. Muhammad K, Ullah A, Lloret J, Del Ser J, de Albuquerque VHC (2020) Deep learning for safe autonomous driving: Current challenges and future directions. IEEE Trans Intell Transp Syst 22(7):4316–4336
4. Xu D, Wang W, Tang H, Liu H, Sebe N, Ricci, E (2018) Structured attention guided convolutional neural fields for monocular depth estimation. In: Proceedings of the IEEE Conference on computer vision and pattern recognition, pp 3917–3925
5. Fu H, Gong M, Wang C, Batmanghelich K, Tao D (2018) Deep ordinal regression network for monocular depth estimation. In: Proceedings of the IEEE Conference on computer vision and pattern recognition, pp 2002–2011
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