A Literature Review on Structural Properties of Different Types of Robots

Rushabh S. Mole, Suman Ramesh Tusiyani Technical Campus, Faculty of Engineering, Khamshet, Pune-410405; Akash M. Rode ,Suman Ramesh Tusiyani Technical Campus, Faculty of Engineering, Khamshet, Pune-410405; Ketan N. Phadtare ,Suman Ramesh Tusiyani Technical Campus, Faculty of Engineering, Khamshet, Pune-410405; Pavan D. Patil ,Suman Ramesh Tusiyani Technical Campus, Faculty of Engineering, Khamshet, Pune-410405; Jitendra B. Satpute ,Suman Ramesh Tusiyani Technical Campus, Faculty of Engineering, Khamshet, Pune-410405

Types of Robots, DOF, Properties, End effector, Configuration;

Nowadays Robots are playing a vital role in all the activities in human life including industrial needs. In modern industrial manufacturing process consists of precise and fastest proceedings. Human operations are needed to perform a various tasks in a robotic system such as set-up, programming, trouble shooting, maintenance and error handling activities. Hazardous conditions exist when human operators interfere into the robotic work zones. Human perception, decision making, and action strategies need to be studied to prevent robot-related accidents. System designers and technology managers they are required to consider the limitations of operator perceptual process in design and layout of robotic system. The ultimate object is to save human lives to increasing productivity and quality of high technology work environments. Effective safety training programs for work with industrial robots should be developed. One of the major areas of Research & Development (R&D) that has made a radical improvement in Computer Science and electronics is “Automation” and “Artificial Intelligence”. Autonomous Systems are self-governed and does not require any manual interventions. The objective of the paper is to study the all types of robots and sate its properties, advantages disadvantages and applications.
    [1] International federation of robotics (IFR), “World Robotics”, Switzerland: United Nation, 2005. [2] Khatib, S., “Springer Handbook of Robotics”, USA: Springer-Verlag Berlin Heidelberg, 2008. [3] Gieras, F. J., Piech, J. Z., Tomczuk, I. “Linear Synchronous Motors: Transportation and Automation Systems, Second Edition” USA: Taylor and Francis Group,LLC, pp.407-413, 2012. [4] Kuttan, A., “Robotics”, India: I.K. International publishing house, 2007. [5] Sanchez, S. P., Cortes, R. F., “Cartesian Control for Robot Manipulators, Robot Manipulators Trends and Development”, 2010. [6] Saha, S. K., “Introduction to Robotics”, India: Tata McGraw-Hill publishing company Ltd., 2008. [7] Mathia, K., “Robotics for Electronics Manufacturing: Principles and Applications in Cleanroom Automation”, UK: Cambridge University Press, 2010. [8] Tsai, L. W., “Robot Analysis: The Mechanics of Serial and Parallel Manipulators” Canada: John Wiley & Sons, 1999. [9] Merlet, J. P., “Parallel Robots: Second Edition”, Netherlands: Springer, 2006. [10] Zhang, D., “Parallel Robotic Machine Tools”, Canada: University of Ontario Institute of Technology (UOIT), pp.1-5, 2010. [11] Gogu, G., “Structural Synthesis of Parallel Robots: Part 4: Other Topologies with Two or three degree of freedom”, France: France Institute of advanced mechanism, pp.1-10, 2012. [12] Nof, Y. S., “Handbook of industrial robotics, volume 1”, Canada: John Wiley & Sons, 1999. [13] Bagad, V. S., “Mechatronics” India: Technical Publication Pune, 2008. [14] Roa, P. N., “CAD/CAM Principles and Applications 3rd Edition”, India: Tata McGraw Hill Education private Ltd., 2010.
Paper ID: GRDJEV02I040038
Published in: Volume : 2, Issue : 4
Publication Date: 2017-04-01
Page(s): 46 - 51