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Humans can routinely follow a trajectory defined by a list of images/landmarks.
1902
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P. Anderson, Q. Wu, D. Teney, J. Bruce, M. Johnson, N. Sünderhauf, I. Reid, S. Gould, and A. van den Hengel, “Vision-and-language navigation: Interpreting visually-grounded navigation instructions in real environments,” in Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition , 2018, pp. 3674–3683
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2018
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N. Hirose, A. Sadeghian, F. Xia, R. Martín-Martín, and S. Savarese, “Vunet: Dynamic scene view synthesis for traversability estimation using an rgb camera,” IEEE Robotics and Automation Letters , 2019
2019
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J. Hwangbo, J. Lee, A. Dosovitskiy, D. Bellicoso, V. Tsounis, V. Koltun, and M. Hutter, “Learning agile and dynamic motor skills for legged robots,” Science Robotics , vol. 4, no. 26, p. eaau5872, 2019
2019
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K. Chen, J. P. de Vicente, G. Sepulveda, F. Xia, A. Soto, M. Vazquez, and S. Savarese, “A behavioral approach to visual navigation with graph localization networks,” 2019
2019
Closest in time.