With the support of 5G, laser navigation AGV will usher in a new application mode with low latency, high bandwidth, and large connection transmission characteristics.
Under the original technical system, due to transmission delays and bandwidth bottlenecks, in order to ensure application flexibility, laser navigation AGV functions are more built into the local terminal and operate independently as a stand-alone device.
The laser navigation AGV will no longer be subject to transmission constraints, but as an execution terminal, it will be connected to the control center in real time, supporting tasks to be assigned to the AGV at any time. The background can track the entire process of the AGV through sensing terminals such as audio and video, real-time control the logistics transportation trajectory and status, and can perform arbitrary interruption, recovery, adjustment, and other operations on the executed tasks, achieving unprecedented flexibility and flexibility.
The second is to improve the level of intelligence. Laser navigation AGV achieves real-time interaction between the front end and the center through networking. With the support of 5G high bandwidth, many AI algorithms that originally need to be run locally have been migrated to the background cloud, greatly reducing the computational load of the front end AGV; Not only that, while reducing the load, laser navigation AGV can also add more sensors and improve multi-dimensional sensing capabilities.

In addition, with the support of 5G, the huge data sensed by AGV can be transmitted back to the computing center in real time. With the huge computing power in the background, it can provide faster, more accurate, and more comprehensive AI analysis, and then deliver accurate instructions to laser navigation AGV, improving flexible logistics handling capabilities. The third is to improve the scene adaptation ability. With the improvement of intelligence, laser navigation AGV's capabilities in environmental awareness, behavioral awareness, obstacle response, and system coordination will be comprehensively improved, and it can adapt to complex work scenarios such as multiple obstacles, cross floors, and chaotic warehouses, ensuring the safety, stability, reliability, and organization of the logistics handling process.
The fourth is to reduce human intervention. The communication network constructed by 5G will run through every node and device of the smart factory, achieving intelligent networking and management of intelligent manufacturing, greatly reducing the number of factory personnel required and the frequency of human intervention, and improving the level of factory automation. As the backbone of logistics transportation, laser guided AGV will achieve automatic docking and transportation of materials throughout the entire process, improve transportation efficiency, and reduce labor costs.

The fifth is to bridge the business gap. The logistics handling system is only one of the organic components of a smart factory. With 5G enabled, the isolated states of various associated systems will be cleared and effectively integrated into an organic whole. The AGV scheduling system has achieved seamless integration with production management systems such as WMS, MES, and ERP. When there is an order, the smart factory will operate intelligently under the unified scheduling of the central control center, The laser navigation AGV will also intelligently handle materials according to the instructions assigned by the system, thereby achieving the intelligent production goal of fully automatic order placement and intelligent factory scheduling.


