Analysis of the difference between intelligent robot and traditional robot

The future development of robots is not the kind of large-scale robots for welding and painting production lines, but the development of smaller, widely used robots, and the cost-effective robots for small and medium-sized enterprises, namely intelligent robots . Flexibly change the robot according to the actual needs of various fields.

The value of robots was initially recognized in the industrial field and recognized globally. In particular, in the automotive and electronics manufacturing industries in the main demand areas, the installation and use of robots has led to a significant increase in production efficiency. The development of a new generation of information and communication technologies has spawned innovations and applications in mobile Internet, big data, cloud computing, and industrial programmable controllers , and has promoted profound changes in manufacturing methods and development models. The German “Industry 4.0” strategy aims to transform manufacturing into an intelligent enterprise through in-depth application of information technology and network physical systems.

With the advent of the German Industry 4.0 era, on the one hand, industrial robots in the manufacturing field will become the main force of intelligent manufacturing, because manufacturing is the main application field of robots. Robots have been widely used in the automation of production processes. For example, in today's automobile industry and mass production technology of the electronics manufacturing industry, a large number of robots are used. On the other hand, Internet companies such as Google are involved in the robot industry. The robotic industry environment has brought about dramatic changes. These changes will enable the robot to start applying big data to achieve self-discipline, so that the robots will be networked, and the Internet of Things era will come true. Robots will also be upgraded to intelligent robots.

At present, Japan is still in the leading position in the world in terms of robot production, application, supply of major components, and research, and remains a "robot power" status. According to the data, in 2012, the output value of Japanese robots was about 340 billion yen, accounting for 50% of the global market share, and the installed quantity (stock) was about 300,000 units, accounting for 23% of the global market share. Moreover, the main components of the robot, including robotic precision reducers , servo motors , gravity sensors, etc., account for more than 90% of the global market share.

However, China's industrial robots are mainly used in industries such as automobiles and electronic information, mainly industrial robots embedded in large-scale production lines. Future robots will be more used in the three-product industry (food, cosmetics, pharmaceuticals) industry, as well as in a wider range of manufacturing areas, service areas of various application environments, and small and medium-sized enterprises. To this end, the future development of robots is not the kind of large-scale robots for welding and painting production lines, but the development of smaller, widely used robots, as well as cost-effective robots for small and medium-sized enterprises. That is, it is necessary to flexibly change the robot according to the actual needs of various fields.

In order to accelerate the popularization of robots, the relationship between robot suppliers, system integrators, and users needs to be repositioned. Different from the past, these three can form a relationship that can be achieved in a win-win situation and can obtain high added value. By then, they will be able to leverage their creativity, form cohesiveness and competitiveness, while taking into account the cost structure, while working together to develop the technology needed to enhance competitiveness.

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