Материал: ДНК наномеханические роботы и вычислительные устройства (Попов), 2008, c.210

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130.Hoffmann G.W. A neural network model based on the analogy with the immune system // Journal of Theoretical Biology. 1986. V. 122. P. 33 – 67.

131.Aristotle. Nicomachean Ethics (Third Book).

132.Mele A., Eds. The Philosophy of Action. Oxford University Press, Oxford, 1997.

133.De Giacomo G., Iocchi L., Nardi D., Rosati R. Moving a robot starting from a theory of actions.

134.Peters J., Vijayakumar S., Schaal S. Reinforcement learning for humanoid robotics // Humanoids2003, Third IEEE-RAS International Conference on Humanoid Robots, Karlsruhe, Germany, Sept.29-30, 2003.

135.Ludwig Wittgenstein, Philosophical Investigations §621.

136.Dumm M. Automatische Behandlung von Ausnahmesituationen bei Montagevor angen. Master's thesis, Fakult¨at f¨ur Informatik, Univ. Karlsruhe, 1991.

137.Langle T., Luth T.C., Stopp E., Herzog G., Kamstrup G. KANTRA - A Natural Language Interface for Intelligent Robots // U. Rembold, R. Dillman, L. O. Hertzberger, T. Kanade, eds. Intelligent Autonomous Systems (IAS 4). IOS, Amsterdam, 1995. P.357-364.

138.Luth T.C., Langle T., Herzog G., Stopp E., Rembold U. KANTRA: HumanMachine Interaction for Intelligent Robots Using Natural Language // 3rd IEEE Int. Workshop on Robot and Human Communication, RO-MAN'94. Nagoya, Japan, 1994. P.106-111.

139.Luth T.C., Rembold U. Extensive Manipulation Capabilities and Reliable Behaviour at Autonomous Robot Assembly // Proc. of IEEE Int. Conf. on Robotics and Automation, San Diego, CA, 1994.

140.Langle T., Luth T.C., Stopp E., Herzog G. Natural Language Access to Intelligent Robots: Explaining Automatic Error Recovery // A. M. Ramsay, Eds. Artificial Intelligence: Methodology, Systems, Applications. Amsterdam: IOS, 1996. P.259-267.

141.http://aldebaran-robotics.com

142.Hirai K. Current and future perspective of Honda humamoid robot // Proceedings of the 1997 IEEE/RSJ International Conference on Intelligent Robot and Systems. Grenoble, France: IEEE, New York, NY, USA, 1998. P.500-508.

201

143.Hirai K., Hirose M., Haikawa Y., Takenaka T. The development of Honda humanoid robot // IEEE International Conference on Robotics and Automationp. Leuven, Belgium: IEEE, New York, NY, USA, 1998. P.1321-1326.

144.Schaal S. Is imitation learning the route to humanoid robots? // Trends in Cognitive Sciences. 1999. V.3. P.233-242.

145.Rosenschein S. Plan synthesis: a logical approach // Proc. of the 8th Int. Joint Conf. on Artificial Intelligence. 1981.

146.Schild K. A correspondence theory for terminological logics: Preliminary report // Proceedings of the Twelfth International Joint Conference on Artificial Intelligence

(IJCAI­91). 1991. P.466-471.

147.Kozen D., Tiuryn J. Logics of programs // van Leeuwen J., eds. Handbook of

Theoretical Computer Science. Elsevier Science Publishers (North­Holland),

Amsterdam, 1990. P.790-840.

148.Wille R. Restructuring lattice theory: an approach based on hierarchies of concepts // I. Rival, editor. Ordered sets. Ridel, Dordrecht-Boston, 1982. P.445-470.

149.Birkhoff G. Lattice theory. 3rd edition, Coll. Publ., XXV. American Mathematical Society, Providence, RI, 1967.

150.Barbut M., Monjardet B. Ordre et classification. Hachette, Paris, 1970.

151.Casal A., Yim M. Self-reconfiguration planning for a class of modular robots // Proceedings of SPIE, Sensor Fusion and Decentralized Control in Robotic Systems II. 1999. V.3839. P.246-255.

152.Donald B.R., Xavier P.G., Canny J.F., Reif J.H. Kinodynamic motion planning // Journal of the ACM, 1993. V.40. N5. P.1048-1066,

153.Kotay K., Rus D. Generic distributed assembly and repair algorithms for selfreconfiguring robots // Proc. of IEEE Intl. Conf. on Intelligent Robots and Systems, 2004.

154.Pamecha A., Chiang C., Stein D., Chirikjian G. Design and implementation of metamorphic robots // Proceedings of the 1996 ASME Design Engineering Technical Conference and Computers in Engineering Conference, 1996.

155.Pamecha A., Ebert-Uphoff I., Chirikjian G. Useful metrics for modular robot motion planning // IEEE Trans. Robot. Automat. 1997. P.531–545.

202

156.Rus D., Vona M. Crystalline robots: Self-reconfiguration with unitcompressible modules // Autonomus Robots. 2001. V.10. N1. P.107–124.

157.Reif J.H., Slee S. Asymptotically optimal kinodynamic motion planning for selfreconfigurable robots // Seventh International Workshop on the Algorithmic Foundations of Robotics (WAFR2006), NYC, New York, July 16-18, 2006.

158.Reif J.H., Slee S. Optimal Kinodynamic Motion Planning for Self-Reconfigurable Robots Between Arbitrary 2D Configurations // Robotics: Science and Systems

Conference, Georgia Institute of Technology, Atlanta, GA, June 27-30, 2007.

159.Vassilvitskii S., Suh J., Yim M. A complete, local and parallel reconfiguration algorithm for cube style modular robots // Proc. of the IEEE Int. Conf. on Robotics and Automation, 2002.

160.Vassilvitskii S., Kubica J., Rieffel_E., Suh J., Yim M. On the general recon_guration problem for expanding cube style modular robots // Proceedings of the 2002 IEEE Int. Conference on Robotics and Automation. 2002. P.801-808.

161.Vona M., Rus D. Self-reconfiguration planning with compressible unit modules // 1999 IEEE International Conference on Robotics and Automation, 1999.

162.Walter J., Tsai B., Amato N. Choosing good paths for fast distributed reconfiguration of hexagonal metamorphic robots // Proc. of the IEEE Intl. Conf. on Robotics and Automation, 2002. P.102–109.

163.Walter J.E., Welch J.L., Amato N.M.. Distributed reconfiguration of metamorphic robot chains // PODC ‘00. 2000. P.171–180.

164.Yim M., Duff D., Roufas K. Polybot: A modular reconfigurable robot // ICRA. 2000. P.514-520.

165.Aldakhilallah K. A., Ramesh R. Recognition of minimal feature covers of prismatic objects: a prelude to automated process planning // International Journal of Production Research. 1997. V.35. P.635-650.

166.Reif J., Slee S. Asymptotically Optimal Kinodynamic Motion Planning for Modular Self-Reconfigurable Robots // International Journal of Computational Geometry & Applications. 2008.

203

167.Barraquand J., Latombe J.C. Nonholonomic multibody mobile robots: Controllability and motion planning in the presence of obstacles // Algorithmica. 1993. V.10. P.121–155.

168.Boissonnat J.D., Bui X.N. Accessibility Region for a Car that Only Moves Forwards along Optimal Paths // Technical report, INRIA, Sophia Antipolis, France, 1994.

169.Boissonnat J.D., Cerezo A., Leblond J. Shortest paths of bounded curvature in the plane // Proceedings of the IEEE International Conference on Robotics and Automation. Nice, France, 1992. P.2315–2320.

170.Boissonnat J.D., Cerezo A., Leblond J. A Note on Shortest Paths in the Plane Subject to a Constraint on the Derivative of the Curvature // Technical report, INRIA, Sophia Antipolis, France, 1994.

171.Bui X.N., Boissonnat J.D., Soueres P., Laumond J.P. Shortest path synthesis for Dubins non-holonomic robot // Proceedings of the IEEE International Conference on Robotics and Automation. San Diego, CA, 1994. P.2–7.

172.Canny J. Some algebraic and geometric configuration in PSPACE // Proc. Annual ACM Sympos. TheoryComput. 1988. V.20. P.460–467.

173.Fraichard T. Smooth trajectory planning for a car in a structured world // Proceedings of the IEEE International Conference on Robotics and Automation. Sacramento, CA, 1991. P.2–7.

174.Jacobs P., Laumond J.P., Taix M. Efficient motion planners for nonholonomic mobile robots // Proceedings of the IEEE/RSJ International Workshop on Intelligent Robots and Systems. Osaka, Japan, 1991. P.1229–1235.

175.Kostov V.P., Degtiariova-Kostova E.V. Suboptimal Paths in the Problem of a Planar Motion with Bounded Derivative of the Curvature // Technical report, INRIA, Cedex, France, 1993.

176.Kostov V.P., Degtiariova-Kostova E.V. The Planar Motion with Bounded Derivative of the Curvature and Its Suboptimal Paths, Technical report, INRIA, Cedex, France, 1994.

204

177.Latombe J.C. A fast path-planner for a car-like indoor mobile robot // Proceedings of the Ninth National Conference on Artificial Intelligence. Anaheim, CA, 1991. P.659–665.

178.Laumond J.P. Finding collision free smooth trajectories for a nonholonomic mobile robot // Proc. Internat. Joint Conf. Artificial Intelligence. 1987. V.10. P.1120–

1123.

179.Laumond J.P., Simeon T. Motion Planning for a Two Degrees of Freedom Mobile Robot with Towing // Technical report, LAAS/CNRS, LAAS, Toulouse, France, 1989.

180.Laumond J.P., Taix M., Jacobs P. A motion planner for car-like robots based on a global/local approach // Proc. IEEE/RSJ International Workshop on Intelligent Robots and Systems. Tsuchira, Japan, 1990. P.765–773.

181.Nakamura Y., Mukherjee R. Nonholonomic path planning and automation // Proceedings of the IEEE International Conference on Robotics and Automation. Scottsdale, AZ, 1989. P.1050–1055.

182.Reif J. Complexity of the generalized movers problem // J. Hopcroft, J. Schwartz, and M. Sharir, Eds. Planning, Geometryand Complexity of Robot Motion. Ablex, Norwood, NJ, 1987. P.267–281.

183.Schwartz J.T., Sharir M. Algorithmic motion planning in robotics // J. V. Leeuwen, ed. Algorithms and Complexity. Handbook of Theoretical Computer Science, Vol. A, Elsevier, Amsterdam, 1990. P.391–430.

184.Wilfong G. Motion planning for an autonomous vehicle // Proceedings of the IEEE International Conference on Robotics and Automation, 1988. P.529–533.

185.Wilfong G. Shortest paths for autonomous vehicles // Proceedings of the IEEE International Conference on Robotics and Automation, 1989. P.15–20.

186.Amato N.M., Bayazit O.B., Dale L.K., Jones C., Vallejo D. OBPRM: An obstaclebased PRM for 3D workspaces // Proc. 3rd Workshop Algorithmic Found. Robot., 1998. P.155–168.

187.Amato N.M., Dill K.A., Song G. Using motion planning to map protein folding landscapes and analyze folding kinetics of known native structures // Proc. 6th Annu. Int. Conf. Computat. Biol., 2002. P.2–11.

205

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