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How to implement RFID technology in the robot production frameworkv

With the rapid development of artificial intelligence, the field of intelligent automation has become the focus of attention in various production and manufacturing fields. The market demand for intelligent production is constantly upgrading and diversifying, and intelligent manipulators have also become one of the core constructions; production links with high risk factors are particularly important. RFID technology manipulators collect information quickly and accurately. In today's trend of intelligent production and manufacturing information integration, RFID technology has greatly reduced manpower investment and improved management efficiency. How to implement RFID technology in the manipulator production framework.

There are more and more application areas for manipulators, especially those that cause harm to personnel. Therefore, the variety of manipulator parts has also begun to be diverse, and the output has also increased accordingly. In the face of the complex and diverse varieties and large quantities of manipulator parts, the traditional production management method is to use manual labor to manage the production of manipulator parts. The key to work efficiency lies in employees. Then the speed and accuracy of employees' reading and identification of information related to manipulator parts products during work will have a certain impact, and the final result is to affect work efficiency and even the quality of manipulator parts. In the face of the existing management status of manipulators, try to use automatic identification technology to improve the management status of manipulator parts.


RFID technology can realize automatic control and monitoring of products on the production line of robot parts, which will greatly improve the speed and accuracy of production, improve work efficiency, improve production methods and save costs. RFID tags can conveniently and accurately record process information and process operation information on the production line of robot parts to meet the needs of flexible production. The record of worker work number, time, operation and quality inspection results can fully realize the traceability of production, and can also avoid mistakes caused by handwriting and visual information in the production environment. On the assembly line, the model information on the RFID tag is identified to determine whether it is the model of the part to be assembled. If so, it will be put into the next process to wait for assembly. If not, it will be screened out.

At present, the warehouse management of robot parts is mainly based on the corresponding standardized manual operation and computer semi-automatic management. Its disadvantage is that a lot of manpower is required to standardize the placement of items, regular inventory and in/out registration. This makes the warehouse management of robot parts very cumbersome and wastes a lot of time. The warehouse management system design of robot parts based on RFID technology is to realize the automation of item in/out control, item storage location and quantity statistics, and information query process, which is convenient for managers to count, query and master the flow of materials.

An RFID electronic tag is attached to each pallet entering and leaving the robot parts warehouse, and an RFID Reader is installed on the door entering and leaving the warehouse. Each warehouse manager has an RFID handheld device. In this way, before each batch of robot parts enters the warehouse, the warehouse manager uses an RFID handheld device to scan the RFID electronic tag of the robot parts on each pallet and record the robot parts. When the robot parts of this pallet enter the warehouse, the RFID reader at the door will directly read the robot parts information on the tag and Store it in the computer for recording. The background information management system will automatically generate records and accurately record where this batch of robot parts are placed in the warehouse, so that the warehouse manager will no longer need to find them row by row when they are to be shipped.


If someone pushes the pallet out of the warehouse, the background system will immediately show that these robot parts have been out of the warehouse and automatically generate a time record. In this way, there will be no trouble of forgetting to enter the information into the computer due to the negligence of the warehouse manager, and it will be difficult to check the data after the problem occurs. If the warehouse manager himself does not know how to operate the computer, it will not cause problems for information management.


The application of RFID technology will perfectly assist the storage management of robot parts and become a carrier for information collection. RFID technology makes the robot arm smarter and more flexible, continuously optimizes each operation link in the entire management, reduces errors caused by many factors in the management process, saves a lot of labor costs, and improves work efficiency.


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