Wireless Networks for Industrial Automation
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This Reference is not available in your current subscription. Notify your administrator of your interest. Wireless Networks for Industrial Automation 3rd Edition Details This digital edition includes the increasingly popular wireless application Radio Frequency Identification RFID and also provides a clear, unbiased view of the emerging wireless communications market.
The author explores wireless communications from the factory and process automation viewpoint to help you make clear decisions on the timing and strategy for implementing wireless networks for automation projects. According to the author, going wireless is more than just plugging in some wireless components to replace the wires. Industrial use is not quite so clear due to privacy and security problems and the potential for signal loss in plant environments. Industrial use must have secure communications that never fails. However, the cost of industrial wiring is so high, that wireless can usually be justified.
This Third Edition includes a general update of events that have occurred since the previous edition. Of significance, is an overview of new technologies, such as ISA Show less.
Wireless Networks for Industrial Automation
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Click here to Expand all. Share This Article:. While scalability is a common consideration for several manufacturing companies, getting it right requires a combination of the right strategy and enabling solutions.
Secured wireless communication for industrial automation and control - IEEE Conference Publication
With the emergence of technologies like the Internet of Things IoT , edge analytics, and additive manufacturing inspiring new production techniques, the manufacturing industry is perfectly positioned to embrace wireless 5G industrial networks. The fifth generation network provides extremely reliable low-latency connectivity that manufacturers can leverage to address diverse, high-performance use cases associated with industrial automation. Rapid data transfer over a one millisecond latency network makes 5G edge computing ideal for real-time communication with closed-loop robotic controls.
This facilitates industrial automation with increased worker productivity and safety, zero-defect manufacturing, integrated massive sensing, and 3-D scanning technologies for maintenance and training.
By leveraging 5G industrial networks, this becomes possible with reliable communications across factory floors and business offices. Seamless process integration and streamlined logistical movement are only a few benefits of such a high degree of connectivity. Operators can also implement 5G automation in logistics to error-proof picking and packaging of materials using autonomous trolleys as well as vessels and localized forklifts.
Take the instance of high-risk offshore rig maintenance operations. By deploying a maintenance drone that relays the feed through VR and real-time video streaming, operators can see the exact problem from the safety of their operating rooms.