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Zhihan Lv Ed. – IGI Global, 2024
The rapid adoption of deep learning models has resulted in many business services becoming model services, yet most AI systems lack the necessary automation and industrialization capabilities. This leads to heavy reliance on manual operation and maintenance, which not only consumes power but also causes resource wastage and stability issues during…
Descriptors: Artificial Intelligence, Robotics, Computer Software, Problem Solving
Rehg, James – Technological Horizons in Education, 1986
Manufacturing isn't what it used to be, and the United States must ensure its position in the world trade market by educating factory workers in new automated systems. A computer manufacturing engineer outlines the training requirements of a modern workforce and details robotic training devices suitable for classroom use. (JN)
Descriptors: Automation, Manufacturing, Manufacturing Industry, Postsecondary Education
DiCesare, Frank; And Others – Perspectives in Computing, 1985
A general laboratory course featuring microcomputer interfacing for data acquisition, process control and automation, and robotics was developed at Rensselaer Polytechnic Institute and is now available to all junior engineering students. The development and features of the course are described. (JN)
Descriptors: Automation, Course Descriptions, Curriculum Development, Engineering Education
Tucker, James D. – 1989
This training module on the troubleshooting of an electromechanical system, The Westinghouse Programmable Logic Controller (PLC) controlling a pneumatic robot, is used for a troubleshooting unit in an electromechanical systems/robotics and automation systems course. In this unit, students locate and repair a defect in a PLC-operated machine. The…
Descriptors: Automation, Data Analysis, Electromechanical Technology, Laboratory Safety
Peer reviewedCyert, Richard M. – Issues in Science and Technology, 1985
Proposes that full automation is the best current option for the United States' manufacturing industries. Advocates increased use of electronics, robotics, and computers in the establishment of unmanned factories. Implications of this movement are examined in terms of labor, management, and the structure of the economy. (ML)
Descriptors: Automation, Computers, Electronics, Labor Economics
Peer reviewedStrimaitis, Janet R. – Journal of Chemical Education, 1990
Discussed are applications of robotics in the chemistry laboratory. Highlighted are issues of precision, accuracy, and system integration. Emphasized are the potential benefits of the use of robots to automate laboratory procedures. (CW)
Descriptors: Automation, Chemistry, College Science, Higher Education
Peer reviewedMannaa, A. M.; And Others – European Journal of Engineering Education, 1987
Describes the development of a robot whose mainframe is essentially transparent and walks on four legs. Discusses various gaits in four-legged motion. Reports on initial trials of a full-sized model without computer-control, including smoothness of motion and actual obstacle crossing features. (CW)
Descriptors: Automation, College Science, Computer Oriented Programs, Electromechanical Technology
Hull, Daniel M.; Lovett, James E. – 1985
The six new robotics and automated systems specialty courses developed by the Robotics/Automated Systems Technician (RAST) project are described in this publication. Course titles are Fundamentals of Robotics and Automated Systems, Automated Systems and Support Components, Controllers for Robots and Automated Systems, Robotics and Automated…
Descriptors: Automation, Course Descriptions, Electromechanical Technology, Learning Activities
Arnold, W. F.; Carpenter, C. J. – 1984
This report examines ways of providing technician training in the operating principles of robotic devices. The terms "robotics" and "robotic arms" are first defined. Some background information on the principal features of robotic arms is given, including their geometric arrangement, type of actuator used, control method, and…
Descriptors: Automation, Behavioral Objectives, Core Curriculum, Costs
Thode, Brad – 1987
This curriculum guide provides ideas for implementing technology education in grades 7-12. It assumes a basic understanding of the four clusters of manufacturing, construction, communications, and power/transportation and is meant to supplement and reorganize this approach with up-to-date information and activities. One way to present a variety of…
Descriptors: Automation, Behavioral Objectives, Communications, Computer Oriented Programs
Luzerne County Community Coll., Nanticoke, PA. – 1988
The project described in this report was conducted at the Community College of Luzerne County (Pennsylvania) to develop, in conjunction with area vocational-technical schools, the second year of a competency-based curriculum in automated systems/robotics technology. During the project, a task force of teachers from the area schools and the college…
Descriptors: Articulation (Education), Automation, Community Colleges, Competency Based Education
Basta, Nicholas – Graduating Engineer, 1986
Discusses the career outlook for mechanical engineers. Explains that the number of bachelor degrees awarded yearly has reached a plateau, but salaries continue to rise. Suggests that the largest increase in demand for mechanical engineers will come from industries involved in automation, particularly those developing robotics. (TW)
Descriptors: Automation, Career Choice, Career Planning, College Science
Benton, Oliver; Branch, Charles W. – 1984
The purpose of this paper is to assist those in education, government, and industry who are responsible for managing vocational and technical training in their decisions about what programs should be initiated to accommodate the growing use of robots. Section 1 describes robot characteristics (type of drive, method of teaching, lifting capacity,…
Descriptors: Automation, Educational Planning, Electronics, Employment Projections
Doty, Charles R. – 1985
This publication identifies exemplary programs and human resources in the automated manufacturing technologies. Its purpose is to assist vocational education program planners and curriculum specialists in updating programs and staff skills to prepare for high technology. Chapter 1 is an introduction. Chapter 2 describes the seven U.S. Secretary of…
Descriptors: Automation, Computer Graphics, Computer Oriented Programs, Demonstration Programs
Lewis, Morgan; And Others – 1985
This booklet provides a brief overview of some of the major trends most likely to influence vocational education during the remainder of the 1980s. It is directed to all vocational educators, particularly planners and policymakers, who want a better understanding of the conditions under which their programs will operate. It considers the nation's…
Descriptors: Automation, Business Cycles, Economic Climate, Educational Finance
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