1. Alur, R., Das, A., Esposito, J., Fierro, R., Hur, Y., Grudic, G., Kumar, V., Lee, I., Ostrowski, J. P., Pappas, G., Southall, J., Spletzer, J., and Taylor, C. J. (2000). A framework and architecture for multirobot coordination. In Proc. ISEROO, Seventh International Symposium on Experimental Robotics, Honolulu, Hawaii.
2. Barraquand, J., Langlois, B., and Latombe, J. (1992). Numerical potential field techniques for robot path planning. IEEE Trans. Syst., Man, and Cyber., 22(2):224–241.
3. Barraquand, J. and Latombe, J. (1993). Non-holonomic multibody mobile robots: controllability and motion planning in the presence of obstacles. Algorithmica, 10:121–155.
4. Beard, R. W., Lawton, J., and Hadaegh, F. Y. (1999). A coordination architecture for spacecraft formation control. Submitted to IEEE Trans. Contr. Sys. Technology.
5. Bemporad, A., De Luca, A., and Oriolo, G. (1996). Local incremental planning for a car-like robot navigating among obstacles. In Proc. IEEE Int. Conf. Robot. Automat., pages 1205–1211.