Application of 5G in Industrial Internet

The use of 5G for industrial internet is a trend that can’t be avoided. On the one hand, the progress of the industrial internet relies on support from humans and objects.

The advantages of 5G’s wide coverage, large capacity, mobility, and various applications make it possible for various devices to access the industrial Internet, thus expanding its range and size.

On the contrary, 5G’s fast, reliable, and efficient data transmission allows machinery and equipment in the industrial Internet to interact quickly.

Industrial Internet

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Improve the Accuracy of the Remote Control.

The traditional communication networks have delays and can’t guarantee the stability of industrial systems, so they can’t fulfill the exact needs of industrial production.

Remote control offers automatic control with no limitations on space and time, plus saving manpower. 5G technology implementation can bring better accuracy to the remote controller.

Promote the Transformation of Flexible Manufacturing

To achieve flexible production, rapid self-organizing production lines should be used. Currently, the majority of manufacturing sites still use wired links.

Removing lanes is expensive and can even be hazardous. Demand for fast 5G optical modules has risen significantly.

In the near future, it is possible that up to 10 million stations are built for 5G nationwide coverage, and this could possibly lead to a requirement for hundreds of millions of high-velocity optical parts.

To support 5G bearers, high-speed optical modules of 25G, 50G, and 10G are slowly being added to the access layers of front haul, mid haul, and backhaul.

As a low-latency technology with ample bandwidths, connections, and reliability, 5G can reorganize production lines to enable seamless changes in any given situation. This addresses the need for flexible manufacturing.

Driving Smart Service Transformation

Implementing 5G technology into the industrial Internet can create new smart service models such as predictive maintenance and B2C customization, thus enabling the industrial Internet to transition into a smarter service setting.

Predictive maintenance refers to sending data collected by sensors in the field to a cloud platform and analyzing it in real time, predicting any impending failures, and working on preventative maintenance to minimize losses.

B2C customization involves collecting and analyzing data, predicting customers’ future needs in real-time, optimizing products based on those results, and using 5G technology to involve customers in the design and production of the product to make it highly personalized.

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