Estimation of hydrodynamic parameters for underwater systems using a simple off-line regression method: a case study
Author:
Funder
Naval Research Board
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials,Ocean Engineering,Oceanography
Link
http://link.springer.com/content/pdf/10.1007/s00773-018-0599-2.pdf
Reference27 articles.
1. Shibuya K, Kawai K (2009) Development of a new buoyancy control device for underwater vehicles inspired by the sperm whale hypothesis. Adv Robot 23(7–8):831–846
2. Shibuya K, Yoshii S (2013) New volume change mechanism using metal bellows for buoyancy control device of underwater robots. Int Sch Res Not Robot, 1–7
3. Tangirala S, Dzielski J (2007) A variable buoyancy control system for a large AUV. IEEE J Ocean Eng 32(4):762–771
4. Wu PK et al (2011) Zero-power autonomous buoyancy system controlled by microbial gas production. Rev Sci Instrum 82(5):55108
5. Worall M, Jamieson AJ, Holford A, Neilson RD (2007) A variable buoyancy system for deep ocean vehicles. In: Proceedings of OCEANS 2007, vol 44. pp 1–6
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1. Hydrodynamic Parameter Estimation for an Anguilliform-inspired Robot;Journal of Intelligent & Robotic Systems;2020-02-26
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