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This is an open access book. ICMETSS 2022 is to bring together innovative academics and industrial experts in the field of Innovation in Teaching & Learning , Technology-Enhanced Learning in the Digital Era and Integrating Educational Technologies. The primary goal of the conference is to promote research and developmental activities in Innovations in educational technology in the digital age and another goal is to promote scientific information interchange between researchers, developers, engineers, students, and practitioners working all around the world. The conference will be held every year to make it an ideal platform for people to share views and experiences in Innovations in educational technology in the digital age and related areas.
These are exciting times for manufacturing engineers. It has been said that American industry will undergo greater changes during the 1980 and 1990 decades than it did during the entire eight preceding decades of this century. The industrial robot has become the symbol of this progress in computer-integrated manufacturing. This book is for engineers and managers in manufacturing industries who are involved in implementing robotics in their operations. With tens of thousands of industrial robots already in use in the United States, there are plenty of role models for proposed applications to be patterned after. This book provides an overview of robot applications and presents case histories that might suggest applications to engineers and managers for implementation in their own facilities. The application of industrial robots were well developed in the late 1970s and early 1980s. While the reader may note some of the examples discussed in this handbook incorporate older robot models, it is the application that is of interest. As Joseph Engelberger, the founding father of robotics has pointed out, industrial robots in 1988 are "doing pretty much the same kind of work" as they did in 1980.
This book contains papers presented at the 2nd International Conference on Cognitive based Information Processing and Applications (CIPA) in Changzhou, China, from September 22 to 23, 2022. The book is divided into a 2-volume series and the papers represent the various technological advancements in network information processing, graphics and image processing, medical care, machine learning, smart cities. It caters to postgraduate students, researchers, and practitioners specializing and working in the area of cognitive-inspired computing and information processing.
The Industrial Robot-a programmable device capable of executing autonomously a number of manipulations in a production line--opens new perspectives in terms of progress in the mechan ization of industrial production. It ought to be able to liberate man from dangerous, unpleasant and monotonous work. Industrial Robots made their first appearance in the USA in 1962 where they were mainly used in the automobile industry. Since then the number of manufacturers has increased substantially and Industrial Robots are currently finding ever widening fields of application. Anyone wishing to learn something about Industrial Robots is somewhat confined to conferences and their proceedings as these are at the moment the best way to keep abreast of developments in this new and complex field. The "Journees de Microtechnique" take place every two years at the Swiss Institute of Technology in Lausanne and treat a different subject of current interest on each occasion. The subject chosen for October 1974 was the Industrial Robot in general. together with its precision engineering aspects. The present proceedings although somewhat heterogenious, provide abrief introduction to this field and record the state of this technique, of a marked interdisciplinary nature, which is in constant and rapid development.
Robots are increasingly being used in industry to perform various types of tasks. Some of the tasks performed by robots in industry are spot welding, materials handling, arc welding, and routing. The population of robots is growing at a significant rate in various parts of the world; for example, in 1984, a report published by the British Robot Association indicated a robot popula tion distribution between Japan (64,600), Western Europe (20,500), and the United States (13,000). This shows a significant number of robots in use. Data available for West Germany and the United Kingdom indicate that in 1977 there were 541 and 80 robots in use, respectively, and in 1984 these numbers went up to 6600 and 2623, respectively. Just as for other engineering products, the reliability and safety of robots are important. A robot has to be safe and reliable. An unreliable robot may become the cause of unsafe conditions, high maintenance costs, inconvenience, etc. Robots make use of electrical, mechanical, pneumatic, electronic, and hydraulic parts. This makes their reliability problem a challenging task because of the many different sources of failures. According to some published literature, the best mean time between failures (MTBF) achieved by robots is only 2500 hours. This means there is definite room for further improvement in robot reliability. With respect to safety, there have been five fatal accidents involving robots since 1978.