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Effect of Compliant Passive Joint on Swimming Performance for a Multi-Joint Robotic Fish., , и . ROBIO, стр. 2066-2071. IEEE, (2019)Data-Driven Dynamic Modeling for a Swimming Robotic Fish., , , и . IEEE Trans. Ind. Electron., 63 (9): 5632-5640 (2016)An Open-Source, Fiducial-Based, Underwater Stereo Visual-Inertial Localization Method with Refraction Correction., , , , , и . IROS, стр. 4331-4336. IEEE, (2021)Motion Optimization for a Robotic Fish Based on Adversarial Structured Control., , , , и . ROBIO, стр. 346-351. IEEE, (2019)Self-Localization of a Biomimetic Robotic Shark Using Tightly Coupled Visual-Acoustic Fusion., , , , , и . IEEE Trans. Ind. Electron., 71 (10): 12581-12591 (октября 2024)Tightly Coupled Monocular-Inertial-Pressure Sensor Fusion for Underwater Localization of a Biomimetic Robotic Manta., , , , , , и . IEEE Trans. Instrum. Meas., (2024)Learning Insulators Segmentation from Synthetic Samples*., , , и . IJCNN, стр. 1-7. IEEE, (2018)Mechatronic design and implementation of a novel gliding robotic dolphin., , , , и . ROBIO, стр. 267-272. IEEE, (2015)Design and fabrication of a miniature underwater angle of attack sensor for robotic fish., , , и . ROBIO, стр. 694-699. IEEE, (2017)Towards an Esox lucius inspired multimodal robotic fish., , , , и . Sci. China Inf. Sci., 58 (5): 1-13 (2015)