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adversarial events
K. W. Wong, Ehlers, R., and Kress-Gazit, H., Resilient, Provably-Correct, and High-Level Robot Behaviors, IEEE Transactions on Robotics, vol. 34, pp. 936-952, 2018.
collision avoidance
H. Kress-Gazit, Wongpiromsarn, T., and Topcu, U., Correct, Reactive, High-Level Robot Control, IEEE Robotics Automation Magazine, vol. 18, pp. 65-74, 2011.
continuous bisimilar controllers
H. Kress-Gazit, Wongpiromsarn, T., and Topcu, U., Correct, Reactive, High-Level Robot Control, IEEE Robotics Automation Magazine, vol. 18, pp. 65-74, 2011.
control system synthesis
K. W. Wong, Ehlers, R., and Kress-Gazit, H., Resilient, Provably-Correct, and High-Level Robot Behaviors, IEEE Transactions on Robotics, vol. 34, pp. 936-952, 2018.
Controller Synthesis
K. W. Wong, Ehlers, R., and Kress-Gazit, H., Resilient, Provably-Correct, and High-Level Robot Behaviors, IEEE Transactions on Robotics, vol. 34, pp. 936-952, 2018.
cooperative robots
K. W. Wong, Ehlers, R., and Kress-Gazit, H., Resilient, Provably-Correct, and High-Level Robot Behaviors, IEEE Transactions on Robotics, vol. 34, pp. 936-952, 2018.
correct reactive high-level robot control
H. Kress-Gazit, Wongpiromsarn, T., and Topcu, U., Correct, Reactive, High-Level Robot Control, IEEE Robotics Automation Magazine, vol. 18, pp. 65-74, 2011.
DARPA urban challenge
H. Kress-Gazit, Wongpiromsarn, T., and Topcu, U., Correct, Reactive, High-Level Robot Control, IEEE Robotics Automation Magazine, vol. 18, pp. 65-74, 2011.
DUC mission
H. Kress-Gazit, Wongpiromsarn, T., and Topcu, U., Correct, Reactive, High-Level Robot Control, IEEE Robotics Automation Magazine, vol. 18, pp. 65-74, 2011.
environment assumption violations
K. W. Wong, Ehlers, R., and Kress-Gazit, H., Resilient, Provably-Correct, and High-Level Robot Behaviors, IEEE Transactions on Robotics, vol. 34, pp. 936-952, 2018.
environment robots
K. W. Wong, Ehlers, R., and Kress-Gazit, H., Resilient, Provably-Correct, and High-Level Robot Behaviors, IEEE Transactions on Robotics, vol. 34, pp. 936-952, 2018.
failure resilience
K. W. Wong, Ehlers, R., and Kress-Gazit, H., Resilient, Provably-Correct, and High-Level Robot Behaviors, IEEE Transactions on Robotics, vol. 34, pp. 936-952, 2018.
formal methods in robotics and automation
M. Lahijanian, Svorenova, M., Morye, A. A., Yeomans, B., Rao, D., Posner, I., Newman, P., Kress-Gazit, H., and Kwiatkowska, M., Resource-Performance Tradeoff Analysis for Mobile Robots, IEEE Robotics and Automation Letters, vol. 3, pp. 1840-1847, 2018.
high-level robot behaviors
K. W. Wong, Ehlers, R., and Kress-Gazit, H., Resilient, Provably-Correct, and High-Level Robot Behaviors, IEEE Transactions on Robotics, vol. 34, pp. 936-952, 2018.
Intelligent transportation systems
H. Kress-Gazit, Wongpiromsarn, T., and Topcu, U., Correct, Reactive, High-Level Robot Control, IEEE Robotics Automation Magazine, vol. 18, pp. 65-74, 2011.
linear temporal logic
K. W. Wong, Ehlers, R., and Kress-Gazit, H., Resilient, Provably-Correct, and High-Level Robot Behaviors, IEEE Transactions on Robotics, vol. 34, pp. 936-952, 2018.
Linear Temporal Logic (LTL)
K. W. Wong, Ehlers, R., and Kress-Gazit, H., Resilient, Provably-Correct, and High-Level Robot Behaviors, IEEE Transactions on Robotics, vol. 34, pp. 936-952, 2018.

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