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     Advance Journal of Food Science and Technology


Using SIMULINK to Design and Simulate the Peanut Flattening Rolls

Tie Ye, Zhi-Wen Lu, Zhi-Guo Zhong, Chong-Nian Qu and Chun-Hua Ma
School of Physics and Electronic Engineering, Nan Yang Normal University, Nan Yang 473061, China
Advance Journal of Food Science and Technology   2016  3:189-193
http://dx.doi.org/10.19026/ajfst.10.2050  |  © The Author(s) 2016
Received: May ‎5, ‎2015  |  Accepted: June ‎22, ‎2015  |  Published: January 25, 2016

Abstract

Building up two systems for the peanut flattening rolls in the peanut cold rolling process according to SIMULINK, is imitating to solve the radius of the peanut flattening rolls. It includes the deformation resistance system (kf_Subsystem) and the radius of the peanut flattening roll's calculation system (R_Subsystem). These two systems are used to alternately compute the radius of the peanut flattening rolls. What to adopt is the percentage difference between the radius less than 3% and calculation times less than 10 are the termination condition.

Keywords:

Peanut flattening rolls, resistance system, SIMULINK,


References

  1. Coman, D. and A. Lonescu, 2009. Motion control of the soccer robot based on fuzzy logic. In: Simos, T. and G. Maroulis (Eds.), Topics in Fuzzy Logic, 6th International Conference on Computational Methods in Science and Engineering. Crete, Greece, September 2008. Lecture Notes in Advances Computational Science 1148, Melville, New York, pp: 57-60.
    CrossRef    
  2. Docquier, N., A. Poncelet, M. Delannoy and P. Fisette, 2010. Multiphysics modelling of multibody systems: Application to car semi-active suspensions. Vehicle Syst. Dyn. Int. J. Vehicle Mech. Mobility, 48(12): 1439-1460.
    CrossRef    
  3. Ferretti, A., A. Traverso, G.J. Saunders, M.A. Perna and A.F. Massardo, 2012. Transient model validation of a desulfurizer and a syngas generator for high temperature fuel cells. J. Fuel Cell Sci. Tech., 9(1): 13.
    CrossRef    
  4. Hameed, W.I. and K.A. Mohamad, 2014. Strip thickness control of cold rolling mill with roll eccentricity compensation by using fuzzy neural network. Engineering, 6: 27-33.
    CrossRef    
  5. Li, G., Y.Y. Liu and Y. Sun, 2014b. The combined control of the steering and braking system of the vehicle rollover avoidance control. Appl. Mech. Mater., 473: 239-242.
    CrossRef    
  6. Li, Y.G., C.F. Liang and S.F. Wang, 2014a. Study of vehicle handling stability based on MATLAB. Appl. Mech. Mater., 602-605: 489-492.
    CrossRef    
  7. Marin, J.M., H. Rubio, J.C. Garcia-Prada and O. Reinoso, 2014. Modeling and simulation of 5 and 11 DOF ball bearing system with localized defect. J. Test. Eval., 42(1): 1-17.
    CrossRef    
  8. Saleh, M.H., A. Al-Qassar, M.Z. Othman and A.S.M. Al-Obaidi, 2010. Development of the cross-coupling phenomena of mimo flight system using fuzzy logic controller. J. Eng. Sci. Technol., 5(1): 85-93.
  9. Shuang, Y., 2013. Decoupling control and simulation of looper MIMO system for hot strip rolling mill. Adv. Mater. Res., 846-847: 360-364.
  10. Suh, B., Y.H. Chang, S.B. Han and Y.J. Chung, 2012. Simulation of a powertrain system for the diesel hybrid electric bus. Int. J. Automot. Techn., 13(2): 247-253.
    CrossRef    
  11. Trikande, M.W., V.V. Jagirdar and M. Sujithkumar, 2014. Modelling and comparison of semi-active control logics for suspension system of 8x8 armoured multi-role military vehicle. Appl. Mech. Mater., 592-594: 2165-2178.
    CrossRef    
  12. Xiong, Z.Q., C. Zeng, Y.R. Li, Z.G. Wang and Z.B. Xiong, 2012. Delivering way of horizon disturbance to vertical vibration in temper rolling mill. Adv. Mater. Res., 443-444: 289-295.
    CrossRef    
  13. Yi, J., L.M. An, D.H. Li, J.Y. Tian, X.H. Wang and C.X. Liu, 2014. Based on the jerk system phase space division of the study of the method. Adv. Mater. Res., 981: 463-468.
    CrossRef    
  14. Zhang, P., R.F. Yang and X.L. Zhang, 2013. The design for tension control system of FOG coil winding. Appl. Mech. Mater., 380-384: 317-320.
    CrossRef    

Competing interests

The authors have no competing interests.

Open Access Policy

This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.

Copyright

The authors have no competing interests.

ISSN (Online):  2042-4876
ISSN (Print):   2042-4868
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