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Interpretable Trade-offs Between Robot Task Accuracy and Compute Efficiency.

, , and . IROS, page 5364-5371. IEEE, (2021)

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Statistical Hypothesis Testing of Controller Implementations Under Timing Uncertainties., , , , , , and . RTCSA, page 11-20. IEEE, (2022)Quantitative Safety-Driven Co-Synthesis of Cyber-Physical System Implementations., , , , , and . ICCPS, page 99-110. IEEE, (2024)Safety-Aware Implementation of Control Tasks via Scheduling with Period Boosting and Compressing., , , , , and . RTCSA, page 196-205. IEEE, (2023)Certifiable and Efficient Autonomous Cyber-Physical Systems Design., , , , and . VLSID, page 259-263. IEEE, (2024)Safety-Aware Flexible Schedule Synthesis for Cyber-Physical Systems Using Weakly-Hard Constraints., , , , and . ASP-DAC, page 46-51. ACM, (2023)Robust Reachable Set: Accounting for Uncertainties in Linear Dynamical Systems., and . ACM Trans. Embed. Comput. Syst., 18 (5s): 97:1-97:22 (2019)Statistical Approach to Efficient and Deterministic Schedule Synthesis for Cyber-Physical Systems., , , , , and . ATVA (1), volume 14215 of Lecture Notes in Computer Science, page 312-333. Springer, (2023)Dynamic Selection of Perception Models for Robotic Control., , , , and . CoRR, (2022)Offline and Online Monitoring of Scattered Uncertain Logs Using Uncertain Linear Dynamical Systems., and . FORTE, volume 13273 of Lecture Notes in Computer Science, page 67-87. Springer, (2022)Interpretable Trade-offs Between Robot Task Accuracy and Compute Efficiency., , and . IROS, page 5364-5371. IEEE, (2021)