1. Ahuja S, Iles P, Waslander SL (2016) Three-dimensional scan registration using curvelet features in planetary environments. J Field Robot 33(2):243-259 2. Bietresato M, Carabin G, Vidoni R et al (2016) Evaluation of a LiDAR-based 3D-stereoscopic vision system for crop-monitoring applications. Comput Electron Agric 124:1-13 3. de Ridder D, Kouropteva O, Okun O et al (2003) Supervised locally linear embedding. Artificial neural networks and neural information processing-ICANN/ICONIP 2003. Springer, Berlin, Heidelberg, pp 333-341 4. Fang HC, Ong SK, Nee AYC (2014) Novel AR-based interface for human-robot interaction and visualization. Adv Manuf 2(4):275-288 5. Fjeldaas S (2014) Computer vision supported by 3D geometric modelling. Adv Manuf 2(1):22-31 6. Hadsell R, Sermanet P, Ben J et al (2009) Learning long-range vision for autonomous off-road driving. J Field Robot 26(2):120-144 7. Jackel LD, Krotkov E, Perschbacher M et al (2006) The DARPA LAGR program:goals, challenges, methodology, and phase I results. J Field Robot 23(11-12):945-973 8. Jamali A, Rahman AA, Boguslawski P et al (2017) An automated 3D modeling of topological indoor navigation network. GeoJournal 82(1):157-170 9. Jensen MAF, Bochtis D, Sørensen CG et al (2012) In-field and inter-field path planning for agricultural transport units. Comput Ind Eng 63(4):1054-1061 10. Kraus T, Ferreau HJ, Kayacan E et al (2013) Moving horizon estimation and nonlinear model predictive control for autonomous agricultural vehicles. Comput Electron Agric 98:25-33 11. Liu H, Taniguchi T, Tanaka Y et al (2017) Visualization of driving behavior based on hidden feature extraction by using deep learning. IEEE Trans Intell Transp Syst 18(9):2477-2489 12. Lunga D, Prasad S, Crawford MM et al (2014) Manifold-learning-based feature extraction for classification of hyperspectral data:a review of advances in manifold learning. IEEE Signal Process Mag 31(1):55-66 13. Matveev AS, Hoy M, Katupitiya J et al (2013) Nonlinear sliding mode control of an unmanned agricultural tractor in the presence of sliding and control saturation. Rob Auton Syst 61(9):973-987 14. Mehta SS, Burks TF, Dixon WE (2008) Vision-based localization of a wheeled mobile robot for greenhouse applications:a daisychaining approach. Comput Electron Agric 63(1):28-37 15. Milella A, Reina G (2014) 3D reconstruction and classification of natural environments by an autonomous vehicle using multibaseline stereo. Intel Serv Robot 7(2):79-92 16. Mousazadeh H (2013) A technical review on navigation systems of agricultural autonomous off-road vehicles. J Terrramech 50(3):211-232 17. Niesterowicz J, Stepinski TF (2013) Regionalization of multicategorical landscapes using machine vision methods. Appl Geogr 45:250-258 18. Noguchi N, Will J, Reid J et al (2004) Development of a master-slave robot system for farm operations. Comput Electron Agric 44(1):1-19 19. Procopio MJ, Mulligan J, Grudic G (2009) Learning terrain segmentation with classifier ensembles for autonomous robot navigation in unstructured environments. J Field Robot 26(2):145-175 20. Roweis ST, Saul LK (2000) Nonlinear dimensionality reduction by locally linear embedding. Science 290(5500):2323-2326 21. Schölkopf B, Smola A, Müller KR (1997) Kernel principal component analysis. In:International conference on artificial neural networks. Springer, pp 583-588 22. Schölkopf B, Smola A, Müller KR (1998) Nonlinear component analysis as a kernel eigenvalue problem. Neural Comput 10(5):1299-1319 23. Si YS, Liu G, Feng J (2015) Location of apples in trees using stereoscopic vision. Comput Electron Agric 112:68-74 24. Zhang W, Chen Q, Zhang W et al (2018) Long-range terrain perception using convolutional neural networks. Neurocomputing 275:781-787 |