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Robustness analysis of genetic programming controllers for unmanned aerial vehicles.

, and . GECCO, page 135-142. ACM, (2006)

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Incremental Evolution of Autonomous Controllers for Unmanned Aerial Vehicles using Multi-objective Genetic Programming, , and . Proceedings of the 2004 IEEE Conference on Cybernetics and Intelligent Systems (CIS), page 688--693. Singapore, IEEE, (1-3 December 2004)A colony of robots using vision sensing and evolved neural controllers., , , and . IROS, page 2273-2278. IEEE, (2003)Fitness functions in evolutionary robotics: A survey and analysis., , and . Robotics Auton. Syst., 57 (4): 345-370 (2009)Smart Urban Signal Networks: Initial Application of the SURTRAC Adaptive Traffic Signal Control System., , , and . ICAPS, AAAI, (2013)Autonomous controller design for unmanned aerial vehicles using multi-objective genetic programming., and . IEEE Congress on Evolutionary Computation, page 1538-1545. IEEE, (2004)Connection-Based Scheduling for Real-Time Intersection Control., , , and . CoRR, (2022)Platoon-based self-scheduling for real-time traffic signal control., , , and . ITSC, page 879-884. IEEE, (2011)Using memory models to improve adaptive efficiency in dynamic problems., and . CISched, page 7-14. IEEE, (2009)Robustness analysis of genetic programming controllers for unmanned aerial vehicles., and . GECCO, page 135-142. ACM, (2006)Improving Memory for Optimizatioin and Learning in Dynamic Environments.. Carnegie Mellon University, USA, (2011)