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What's inside my app?: understanding feature redundancy in mobile apps.

, , , and . ICPC, page 266-276. ACM, (2018)

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Distributed fault-tolerant control of modular and reconfigurable robots with consideration of actuator saturation., , , and . Neural Comput. Appl., 32 (17): 13591-13604 (2020)Distributed Operation Health Monitoring for Modular and Reconfigurable Robot With Consideration of Actuation Limitation., , and . IEEE Access, (2020)Adaptive Dynamic Programming-Based Fault-Tolerant Position-Force Control of Constrained Reconfigurable Manipulators., , , and . IEEE Access, (2020)Robust control of a two-link flexible manipulator with neural networks based quasi-static deflection compensation., , , and . ACC, page 5258-5263. IEEE, (2003)Evaluating and Enhancing the Robustness of Federated Learning System against Realistic Data Corruption., , , , , , and . ISSRE, page 462-473. IEEE, (2023)Flexible high-resolution object detection on edge devices with tunable latency., , , , and . MobiCom, page 559-572. ACM, (2021)FedBalancer: data and pace control for efficient federated learning on heterogeneous clients., , , and . MobiSys, page 436-449. ACM, (2022)Joint Torque Feedback-based Decentralized Neuro-optimal Control of Input-constrained Modular Robot Manipulator System., and . RCAR, page 922-926. IEEE, (2021)ModelDiff: testing-based DNN similarity comparison for model reuse detection., , , , and . ISSTA, page 139-151. ACM, (2021)Observer based quasi-static deformation compensation control for three-link rigid-flexible manipulator., , and . ICIA, page 886-891. IEEE, (2013)