Optimality Criteria for the Path Planning of Autonomous Industrial Vehicles
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-030-22327-4_7
Reference17 articles.
1. Shiller, Z., Gwo, Y.R.: Dynamic motion planning of autonomous vehicles. IEEE Trans. Robot. Autom. 7(2), 241–249 (1991)
2. Choi, J.S., Kim, B.K.: Near-time-optimal trajectory planning for wheeled mobile robots with translational and rotational sections. IEEE Trans. Robot. Autom. 17(1), 85–90 (2001)
3. Tokekar, P., Karnad, N., Isler, V.: Energy-optimal trajectory planning for car-like robots. Auton. Robots 37(3), 279–300 (2014)
4. Paden, B., Čáp, M., Yong, S.Z., Yershov, D., Frazzoli, E.: A survey of motion planning and control techniques for self-driving urban vehicles. IEEE Trans. Intell. Veh. 1(1), 33–55 (2016)
5. Fraichard, T.: Trajectory planning in a dynamic workspace: a ‘state-time space’ approach. Adv. Robot. 13(1), 75–94 (1998)
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