Page 451 - Sensing, Intelligence, Motion : How Robots and Humans Move in an Unstructured World
P. 451
426 REFERENCES
90. T. Wikman, M. Branicky, and W. Newman. Reflexive collision avoidance: A gen-
eralized approach. In Proceedings of the IEEE International Conference on Robotics
and Automation, Raleigh, NC, May 1993.
91. P. Jacobs, J. P. Laumond, and M. Taix. Efficient motion planners for nonholonomic
mobile robots. IEEE International Conference on Intelligent Robots and Systems
(IROS), Osaka, Japan, August 1991.
92. J. C. Latombe. A fast path planner for a car-like indoor mobile robot. In Proceedings
of the 9th National Conference on Artificial Intelligence, Anaheim, CA, 1991.
93. J. Barraquand and J. C. Latombe. Nonholonomic multibody mobile robots: Con-
trollability and motion planning in the presence of obstacles. In Proceedings of the
IEEE International Conference on Robotics and Automation, Sacramento, CA, May
1991.
94. A. De Luca and G. Oriolo. Local incremental planning for nonholonomic mobile
robots. In Proceedings of the IEEE International Conference on Robotics and
Automation, San Diego, CA, May 1994.
95. T. Fraichard and A. Scheuer. Car-like robots and moving obstacles. In Proceedings
of the IEEE International Conference on Robotics and Automation, San Diego, CA,
May 1994.
96. A. Shkel and V. Lumelsky. The role of time constraints in the design of control
for the Jogger’s Problem. In 34th IEEE Conference on Decision and Control,New
Orleans, 1995.
97. G. Korn and T. Korn. Mathematical Handbook, McGraw-Hill, New York, 1968.
98. L. Hocking. Optimal Control, Clarendon Press, Oxford, 1991.
99. A. Shkel and V. Lumelsky. The Jogger’s Problem: Accounting for body dynamics
in real-time motion planning. Automatica 33(7):1219–1233, 1997.
100. L. S. Pontryagin. The Mathematical Theory of Optimal Processes, Interscience
Publishers, New York, 1962.
101. Unece: World robotics 2003. Technical report, United Nations Economic Commis-
sion for Europe, Geneva, 2003.
102. R. Brooks. Planning collision-free motions for pick-and-place operations. Interna-
tional Journal of Robotics Research 2(4), 1983.
103. V. Milenkovic and B. Huang. Kinematics of major robot linkages. In Proceedings
of the 13th International Symposium on Industrial Robots, Chicago, 1983.
104. M. Mason. Compliance and force control for computer controlled manipulators. In
Robot Motion, K. S. Narendra, ed., MIT Press, Cambridge, MA, 1982, pp. 305–322.
105. H. Behnke et al., eds. Fundamentals of Mathematics, Vol. II: Geometry, MIT Press,
Cambridge, MA, 1974, Chapter 16.
106. E. Cheung and V. Lumelsky. Proximity sensing in robot manipulator motion plan-
ning: System and implementation issues. IEEE Journal of Robotics and Automation
5(6):740–751, 1989.
107. V. Lumelsky and K. Sun. A unified methodology for motion planning with uncer-
tainty for 2d and 3d two-link robot arm manipulators. International Journal of
Robotics Research 9(5):89–104, 1990.
108. T. Lozano-P´ erez. Spatial planning: A configuration space approach. IEEE Trans-
actions on Computers 32(3):108–120, February 1983.

