Vanishing point estimation inspired by oblique effect in a field environment

Borji A (2016) Vanishing point detection with convolutional neural networks. arXiv:1609.00967

Bui TH, Saitoh T, Nobuyama E (2013) Road area detection based on texture orientations estimation and vanishing point detection. In: The SICE annual conference, pp 1138–1143

Chang C, Zhao J, Itti L (2018) DeepVP: deep learning for vanishing point detection on 1 million street view images. In: IEEE international conference on robotics and automation, ICRA , Brisbane, Australia, May 21–25. IEEE, pp 1–8

Cheng M, Zhang Y, Su Y, Alvarez JM, Kong H (2018) Curb detection for road and sidewalk detection. IEEE Trans Veh Technol 67(11):10330–10342

Article  Google Scholar 

Coughlan JM, Yuille AL (2003) Manhattan world: orientation and outlier detection by Bayesian inference. Neural Comput 15(5):1063–1088

Article  PubMed  Google Scholar 

Denis P, Elder JH, Estrada FJ (2008) Efficient Edge-Based Methods for Estimating Manhattan Frames in Urban Imagery. In: Forsyth DA, Torr PHS, Zisserman A (eds) 10th European conference on computer vision, Marseille, France, October 12–18, Proceedings, Part II. vol. 5303 of Lecture Notes in Computer Science. Springer, pp 197–210

Ding W, Li Y, Liu H (2016) Efficient vanishing point detection method in unstructured road environments based on dark channel prior. IET Comput Vis 10(8):852–860

Article  Google Scholar 

Gibson EJ, Walk RD (1960) The visual cliff. Sci Am 202:64–71

Article  CAS  PubMed  Google Scholar 

Guo Y, Liu F, Ma Y (2023) Vanishing point detection of unstructured road based on two-line exhaustive search. In: Subramanian K (ed) Third international conference on intelligent computing and human-computer interaction (ICHCI 2022). vol 12509. SPIE, p 125090V

Han J, Yang Z, Hu G, Zhang T, Song J (2019) Accurate and robust vanishing point detection method in unstructured road scenes. J Intell Robotic Syst 94(1):143–158

Article  Google Scholar 

He ZJ, Nakayama K (1995) Visual attention to surfaces in three-dimensional space. Proc Natl Acad Sci U S A 92(24):11155–11159

Article  CAS  PubMed  PubMed Central  Google Scholar 

Hidayat R, Yanto ITR, Ramli AA, Fudzee MFM, Ahmar AS (2021) Generalized normalized Euclidean distance based fuzzy soft set similarity for data classification. Comput Syst Sci Eng 38(1):119–130

Article  Google Scholar 

Huang L, Shou T, Chen X, Yu H, Sun C, Liang Z (2006) Slab-like functional architecture of higher order cortical area 21a showing oblique effect of orientation preference in the cat. Neuroimage 32(3):1365–1374

Article  PubMed  Google Scholar 

Jang J, Jo Y, Shin M, Paik J (2021) Camera orientation estimation using motion-based vanishing point detection for advanced driver-assistance systems. IEEE Trans Intell Transp Syst 22(10):6286–6296

Article  Google Scholar 

Kamil DA, Wahyono, Harjoko A (2022) Vanishing point detection using angle-based hough transform and RANSAC. In: Seventh international conference on informatics and computing (ICIC), pp 1–5

Kloukiniotis A, Moustakas K (2022) Vanishing point detection based on the fusion of lidar and image data. In: 30th Mediterranean conference on control and automation, MED, Vouliagmeni, Greece, June 28–July 1. IEEE, pp 688–692

Koenderink JJ, Doorn AJV, Kappers AM (1996) Pictorial surface attitude and local depth comparisons. Percept Psychophys 58(2):163–173

Article  CAS  PubMed  Google Scholar 

Kong H, Audibert J, Ponce J (2010) General road detection from a single image. IEEE Trans Image Process 19(8):2211–2220

Article  PubMed  Google Scholar 

Kong H, Sarma SE, Tang F (2013) Generalizing Laplacian of Gaussian filters for vanishing-point detection. IEEE Trans Intell Transp Syst 14(1):408–418

Article  Google Scholar 

Li Y, Tong G, Sun A, Ding W (2018) Road extraction algorithm based on intrinsic image and vanishing point for unstructured road image. Robot Auton Syst 109:86–96

Article  Google Scholar 

Li H, Zhao J, Bazin J, Liu Y (2022) Quasi-globally optimal and near/true real-time vanishing point estimation in Manhattan world. IEEE Trans Pattern Anal Mach Intell 44(3):1503–1518

Article  PubMed  Google Scholar 

Li H, Kim P, Zhao J, Joo K, Cai Z, Liu Z, et al. (2020) Globally Optimal and Efficient Vanishing Point Estimation in Atlanta World. In: Vedaldi A, Bischof H, Brox T, Frahm J (eds) 16th European Conference, Glasgow, UK, August 23–28, Proceedings, Part XXII. vol. 12367 of Lecture Notes in Computer Science. Springer, pp 153–169

Liu Y, Zeng M, Meng Q (2021) Unstructured road vanishing point detection using convolutional neural networks and heatmap regression. IEEE Trans Instrum Meas 70:1–8

Article  Google Scholar 

Moghadam P, Starzyk JA, Wijesoma WS (2012) Fast vanishing-point detection in unstructured environments. IEEE Trans Image Process 21(1):425–430

Article  PubMed  Google Scholar 

Ozcelik YB, Altan A (2023a) Classification of diabetic retinopathy by machine learning algorithm using entropy-based features. In: Cankaya international congress on scientific research, pp 523–535

Ozcelik YB, Altan A (2023b) Overcoming nonlinear dynamics in diabetic retinopathy classification: a robust ai-based model with chaotic swarm intelligence optimization and recurrent long short-term memory. Fractal Fract 7(8):598

Article  Google Scholar 

Rasmussen C (2008) RoadCompass: following rural roads with vision + ladar using vanishing point tracking. Auton Robots 25(3):205–229

Article  Google Scholar 

Shuai Y, Tiantian Y, Guodong Y, Zize L (2017) Regression convolutional network for vanishing point detection. In: 32nd youth academic annual conference of chinese association of automation (YAC), pp 634–638

Wang L, Wei H (2020) Avoiding non-Manhattan obstacles based on projection of spatial corners in indoor environment. IEEE/CAA J Automatica Sinica 7:1190–1200

Article  Google Scholar 

Wang L, Wei H (2020) Understanding of wheelchair ramp scenes for disabled people with visual impairments. Eng Appl Artif Intell 90:103569

Article  Google Scholar 

Wang L, Wei H (2020) Understanding of curved corridor scenes based on projection of spatial right-angles. IEEE Trans Image Process 29:9345–9359

Article  Google Scholar 

Wang L, Wei H (2022) Curved alleyway understanding based on monocular vision in street scenes. IEEE Trans Intell Transp Syst 23(7):8544–8563

Article  Google Scholar 

Wang L, Wei H (2023) Winding pathway understanding based on angle projections in a field environment. Appl Intell 53:16859–16874

Article  Google Scholar 

Wang E, Sun A, Li Y, Hou X, Zhu Y (2018) Fast vanishing point detection method based on road border region estimation. IET Image Process 12(3):361–373

Article  Google Scholar 

Wei H, Wang L (2018) Understanding of indoor scenes based on projection of spatial rectangles. Pattern Recogn 81:497–514

Article  Google Scholar 

Wei H, Wang L (2018) Visual navigation using projection of spatial right-angle in indoor environment. IEEE Trans Image Process 27(7):3164–3177

Article  PubMed  Google Scholar 

Wigness MB, Eum S, Rogers JG, Han D, Kwon H (2019) A RUGD dataset for autonomous navigation and visual perception in unstructured outdoor environments. In: IEEE/RSJ international conference on intelligent robots and systems, IROS , Macau, SAR, China, pp 5000–5007

Yag X, Altan A (2022) Artificial intelligence-based robust hybrid algorithm design and implementation for real-time detection of plant diseases in agricultural environments. Biology 11(12):1732

Article  PubMed  PubMed Central  Google Scholar 

Yang W, Fang B, Tang YY (2018) Fast and accurate vanishing point detection and its application in inverse perspective mapping of structured road. IEEE Trans Syst Man Cybern Syst 48(5):755–766

Article  Google Scholar 

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