DYNAMIC MODEL AND SIMULATION OF ONE ACTIVE JOINT ROBOTIC FISH

Cilt: 12 Sayı: 1 15 Ocak 2017
PDF İndir
TR

DYNAMIC MODEL AND SIMULATION OF ONE ACTIVE JOINT ROBOTIC FISH

Öz

This study considers the dynamic model of one active joint robotic fish by using Lagrange method and simulation of the robotic fish model in MATLAB/SimMechanics environment. Compared results of these two different models are given in the study. The mathematical model of the system is derived from Lagrange energy equations of the robotic fish inspired from a real carangiform fish. The Computer Aided Design (CAD) model of the robotic fish is designed by using SolidWorks and it is transferred to the SimMechanics environment. The hydrodynamic effects, which are linear and nonlinear drag force, are also adapted and head motion, one active joint, and one passive joint angles found by using MATLAB Simulink environment. Obtained results for joint angles from both dynamic and SimMechanics models are compared and proved with animation video of the robotic fish.

Anahtar Kelimeler

Kaynakça

  1. Liu, T.J. and Hu H., (2010). Biological Inspiration: From Carangiform Fish to Multi-Joint Robotic Fish, Journal of Bionic Engineering, Volume:7.
  2. Yan, Q., Han, Z., Zhang, S., and Yang, J., (2008). Parametric Research of Experiments on a Carangiform Robotic Fish, Journal of Bionic Engineering, Volume:5.
  3. Vo, T.Q., Kim, H.S., and Lee, B.R., (2009). Propulsive Velocity Optimization of 3-Joint Fish Robot Using Genetic-Hill Climbing Algorithm, Journal of Bionic Engineering, Volume:6.
  4. Ren, Q., Xu, J., and Li, X., (2015). A Data-driven Motion Control Approach for a Robotic Fish, Journal of Bionic Engineering, Volume:12.
  5. Yu, J. and Yi, C., (2009). Analysis of Relationship between Efficiency and Motion Parameters of Robotic Fish, Intelligent Human-Machine Systems and Cybernetics.
  6. Hirata K., (?). Design and Manufacturing of a Small Fish Robot, Processing of Japan Society for Design Engineering.
  7. Triantafyllou, M.S. and Triantafyllou, G.S., (1995). An Efficient Swimming Machine, Scientific American, Vol:272.
  8. Zhou, C., Tan, M., Cao, Z., Wang, S., Creighton, D., Gu, N., and Nahavandi, S., (2008). Kinematic Modeling of a Bio-inspired Robotic Fish, ICRA 2008.

Ayrıntılar

Birincil Dil

Türkçe

Konular

Mühendislik

Bölüm

-

Yayımlanma Tarihi

15 Ocak 2017

Gönderilme Tarihi

26 Temmuz 2016

Kabul Tarihi

-

Yayımlandığı Sayı

Yıl 1970 Cilt: 12 Sayı: 1

Kaynak Göster

APA
Akpolat, Z. H., Bingöl, M. C., Ay, M., Koca, G. Ö., Bal, C., & Korkmaz, D. (2017). DYNAMIC MODEL AND SIMULATION OF ONE ACTIVE JOINT ROBOTIC FISH. Engineering Sciences, 12(1), 29-39. https://doi.org/10.12739/NWSA.2017.12.1.1A0370
AMA
1.Akpolat ZH, Bingöl MC, Ay M, Koca GÖ, Bal C, Korkmaz D. DYNAMIC MODEL AND SIMULATION OF ONE ACTIVE JOINT ROBOTIC FISH. Engineering Sciences. 2017;12(1):29-39. doi:10.12739/NWSA.2017.12.1.1A0370
Chicago
Akpolat, Zuhtu Hakan, Mustafa Can Bingöl, Mustafa Ay, Gonca Özmen Koca, Cafer Bal, ve Deniz Korkmaz. 2017. “DYNAMIC MODEL AND SIMULATION OF ONE ACTIVE JOINT ROBOTIC FISH”. Engineering Sciences 12 (1): 29-39. https://doi.org/10.12739/NWSA.2017.12.1.1A0370.
EndNote
Akpolat ZH, Bingöl MC, Ay M, Koca GÖ, Bal C, Korkmaz D (01 Ocak 2017) DYNAMIC MODEL AND SIMULATION OF ONE ACTIVE JOINT ROBOTIC FISH. Engineering Sciences 12 1 29–39.
IEEE
[1]Z. H. Akpolat, M. C. Bingöl, M. Ay, G. Ö. Koca, C. Bal, ve D. Korkmaz, “DYNAMIC MODEL AND SIMULATION OF ONE ACTIVE JOINT ROBOTIC FISH”, Engineering Sciences, c. 12, sy 1, ss. 29–39, Oca. 2017, doi: 10.12739/NWSA.2017.12.1.1A0370.
ISNAD
Akpolat, Zuhtu Hakan - Bingöl, Mustafa Can - Ay, Mustafa - Koca, Gonca Özmen - Bal, Cafer - Korkmaz, Deniz. “DYNAMIC MODEL AND SIMULATION OF ONE ACTIVE JOINT ROBOTIC FISH”. Engineering Sciences 12/1 (01 Ocak 2017): 29-39. https://doi.org/10.12739/NWSA.2017.12.1.1A0370.
JAMA
1.Akpolat ZH, Bingöl MC, Ay M, Koca GÖ, Bal C, Korkmaz D. DYNAMIC MODEL AND SIMULATION OF ONE ACTIVE JOINT ROBOTIC FISH. Engineering Sciences. 2017;12:29–39.
MLA
Akpolat, Zuhtu Hakan, vd. “DYNAMIC MODEL AND SIMULATION OF ONE ACTIVE JOINT ROBOTIC FISH”. Engineering Sciences, c. 12, sy 1, Ocak 2017, ss. 29-39, doi:10.12739/NWSA.2017.12.1.1A0370.
Vancouver
1.Zuhtu Hakan Akpolat, Mustafa Can Bingöl, Mustafa Ay, Gonca Özmen Koca, Cafer Bal, Deniz Korkmaz. DYNAMIC MODEL AND SIMULATION OF ONE ACTIVE JOINT ROBOTIC FISH. Engineering Sciences. 01 Ocak 2017;12(1):29-3. doi:10.12739/NWSA.2017.12.1.1A0370