Research on the Optimal Design of Soccer Robot Based on the Mechanical Analysis

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Abstract:

According to the problem that the intelligence is not high of the soccer robot, using the mechanical theory as a guide, making some mechanical analyses and calculations on the pressure and transmutation states of chip kick mechanics, and conducting optimal design too, then making the structure of chip kick mechanics more and more rationalization. Experiments show that the new soccer robot controller features a quick response and high servo rigidity, and provide a kind of method for improving and perfecting the soccer robot control system, at the same time, filling the needs of producing.

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550-553

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June 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Satoshi Kagami,Tomonobu Kitagawa,Koichi Nishiwaki,Tomomichi Sugihara,Masayuki Inaba,Hirochika Inoue.  A Fast Dynamically Equilibrated Walking Trajectory Generation Method of Humanoid Robot [J], 2002.

Google Scholar

[2] HIROKIK, MINORUA, YASUOK, ET al.RoboCup: a challenge problem for AI and robotics. HirokiK. RoboCup-97: Robot Soccer World Cup [C]. Berlin: Springer, 1998.38-43.

DOI: 10.1007/3-540-64473-3_46

Google Scholar

[3] Zhizhong Yin. Application of FPGA control DC motor servo system [J]. Inner Mongolia Science and Technology and Economy, 2008 177 (23) 101-103.

Google Scholar

[4] Joerg Christian Wolf, Phil Hall, Paul Robinson, Phil Culverhouse. Bioloid based Humanoid Soccer Robot Design, 2007.

Google Scholar

[5] Wu Chuan-yu, He Lei-ying, Design and Realization of Instructional RPPR-Robot, Research and Exploration in Laboratory.2007, 26(10)

Google Scholar

[6] Nishiwaki K,Kagami S. High Frequency Walking Pattern Generation based on Preview Control of ZMP, IEEE International Conference on Robotics and Automation. 2006.

DOI: 10.1109/robot.2006.1642104

Google Scholar

[7] Chen Nan and so on. For the field of industrial and highly interconnected, TI launched a new Sitara ARM9 microprocessor. [J]. Global Electronics, 2010 (5) 86-87.

Google Scholar

[8] Vision Heading Navigation Based on Navigation Curve [A]. Proceedings 2010 International Conference on Intelligent Computing and Integrated Systems[C]. 2010.

DOI: 10.1109/iciss.2010.5657096

Google Scholar

[9] Chen Nan and so on. For the field of industrial and highly interconnected, TI launched a new Sitara ARM9 microprocessor. [J]. Global Electronics, 2010 (5) 86-87.

Google Scholar

[10] Jonghoon ZMP Park,Youngil Youm.General ZMP Control for Bipedal Walking. IEEE International Conference on Robotics and Automation. 2007.

DOI: 10.1109/robot.2007.363870

Google Scholar

[11] Chunmei Xu. Mechanical servo system based on fuzzy neural network for complex control [J]. Control Engineering .2010:17 (2):146-148.

Google Scholar

[12] Zhijun He. LM629-based motor servo control system design [J]. Mechanical design and manufacture .2009 (2) 40-42.

Google Scholar