OpenFish: Biomimetic design of a soft robotic fish for high speed locomotion

被引:23
作者
Berg, Sander C. van den [1 ]
Scharff, Rob B. N. [2 ]
Wu, Jun [1 ]
机构
[1] Delft Univ Technol, Dept Sustainable Design Engn, Landbergstraat 15, NL-2628 CE Delft, Netherlands
[2] Ist Italiano Tecnol IIT, Bioinspired Soft Robot Lab, Via Morego30, I-16163 Genoa, Italy
关键词
Soft robotic fish; Oscillating propulsion; Marine robotics; Biomimetics; Subject area; Soft robotics; Hardware type; Underwater exploration;
D O I
10.1016/j.ohx.2022.e00320
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
We present OpenFish: an open source soft robotic fish which is optimized for speed and efficiency. The soft robotic fish uses a combination of an active and passive tail segment to accurately mimic the thunniform swimming mode. Through the implementation of a novel propulsion system that is capable of achieving higher oscillation frequencies with a more sinusoidal waveform, the open source soft robotic fish achieves a top speed of 0:85 m=s. Hereby, it outperforms the previously reported fastest soft robotic fish by 27%. Besides the propulsion system, the optimization of the fish morphology played a crucial role in achieving this speed. In this work, a detailed description of the design, construction and customization of the soft robotic fish is presented. Hereby, we hope this open source design will accelerate future research and developments in soft robotic fish. (c) 2022 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
引用
收藏
页数:11
相关论文
共 17 条
[1]   Oscillating foils of high propulsive efficiency [J].
Anderson, JM ;
Streitlien, K ;
Barrett, DS ;
Triantafyllou, MS .
JOURNAL OF FLUID MECHANICS, 1998, 360 :41-72
[2]  
Chen Kai, 2020, 2020 IEEE International Conference on Advances in Electrical Engineering and Computer Applications (AEECA), P457, DOI 10.1109/AEECA49918.2020.9213466
[3]   Exploration of underwater life with an acoustically controlled soft robotic fish [J].
Katzschmann, Robert K. ;
DelPreto, Joseph ;
MacCurdy, Robert ;
Rus, Daniela .
SCIENCE ROBOTICS, 2018, 3 (16)
[4]   An autonomously swimming biohybrid fish designed with human cardiac biophysics [J].
Lee, Keel Yong ;
Park, Sung-Jin ;
Matthews, David G. ;
Kim, Sean L. ;
Marquez, Carlos Antonio ;
Zimmerman, John F. ;
Ardona, Herdeline Ann M. ;
Kleber, Andre G. ;
Lauder, George, V ;
Parker, Kevin Kit .
SCIENCE, 2022, 375 (6581) :639-+
[5]   Maneuverability of a robotic tuna with compliant body [J].
Mazumdar, Anirban ;
Valdivia Y Alvarado, Pablo ;
Youcef-Toumi, Kamal .
2008 IEEE INTERNATIONAL CONFERENCE ON ROBOTICS AND AUTOMATION, VOLS 1-9, 2008, :683-688
[6]   Robotic Fish Design and Characterization of an Interactive iDevice-Controlled Robotic Fish for Informal Science Education [J].
Phamduy, Paul ;
LeGrand, Raymond ;
Porfiri, Maurizio .
IEEE ROBOTICS & AUTOMATION MAGAZINE, 2015, 22 (01) :86-96
[7]   Any colour you like: fish interacting with bioinspired robots unravel mechanisms promoting mixed phenotype aggregations [J].
Romano, Donato ;
Stefanini, Cesare .
BIOINSPIRATION & BIOMIMETICS, 2022, 17 (04)
[8]   Robot-Fish Interaction Helps to Trigger Social Buffering in Neon Tetras: The Potential Role of Social Robotics in Treating Anxiety [J].
Romano, Donato ;
Stefanini, Cesare .
INTERNATIONAL JOURNAL OF SOCIAL ROBOTICS, 2022, 14 (04) :963-972
[9]   Fighting fish love robots: mate discrimination in males of a highly territorial fish by using female-mimicking robotic cues [J].
Romano, Donato ;
Benelli, Giovanni ;
Hwang, Jiang-Shiou ;
Stefanini, Cesare .
HYDROBIOLOGIA, 2019, 833 (01) :185-196
[10]   Trout-like multifunctional piezoelectric robotic fish and energy harvester [J].
Tan, David ;
Wang, Yu-Cheng ;
Kohtanen, Eetu ;
Erturk, Alper .
BIOINSPIRATION & BIOMIMETICS, 2021, 16 (04)