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Explicable Planning as Minimizing Distance from Expected Behavior.

, , , , , and . AAMAS, page 2075-2077. International Foundation for Autonomous Agents and Multiagent Systems, (2019)

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Explicable Robot Planning as Minimizing Distance from Expected Behavior., , , , , and . CoRR, (2016)A Game Theoretic Approach to Strategy Generation for Moving Target Defense in Web Applications., , , , , , and . AAMAS, page 178-186. ACM, (2017)Anytime pack search., , and . Nat. Comput., 15 (3): 395-414 (2016)Robustness Analysis of Embedded Control Systems with Respect to Signal Perturbations: Finding Minimal Counterexamples Using Fault Injection., and . IEEE Trans. Dependable Secur. Comput., 11 (1): 45-58 (2014)Finding Critical Components in Embedded Control Systems Sensitive to Quality-Faults., , , , and . ISED, page 167-171. IEEE, (2012)Anytime Algorithms for Mining Groups with Maximum Coverage., , and . AusDM, volume 134 of CRPIT, page 209-220. Australian Computer Society, (2012)Incremental Beam search., , and . Inf. Process. Lett., 113 (22-24): 888-893 (2013)A Combinatorial Search Perspective on Diverse Solution Generation., and . AAAI, page 776-783. AAAI Press, (2016)Explicable Planning as Minimizing Distance from Expected Behavior., , , , , and . AAMAS, page 2075-2077. International Foundation for Autonomous Agents and Multiagent Systems, (2019)Anytime Contract Search., , and . SGAI Conf., page 139-155. Springer, (2013)