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Telecom Business Review | Tuesday, February 21, 2023
Mobile network operators can use flexible, decentralized approaches for 6G, including local spectrum licensing, spectrum sharing, and infrastructure sharing.
FREMONT, CA: 5G is still in the deployment stage to replace the old 4G technology. 6G is already developing. As with its predecessors, 6G networks are quicker and handle more capacity with less latency. Virtual and augmented reality (VR and AR), AI, and the IoT will likely be supported by 6G networks to current mobile applications (IoT). Intelligent automated management supported by mobile edge computing, short-packet communication, and blockchain technology will handle everything.
New wireless communication standards develop every ten years, and 6G is scheduled to be implemented around 2030. Now, nothing regarding 6G is set in stone, and even its terminology could be changed to something different. There are a few theoretical elements of 6G and what it may offer if deployed. Consumers will continue to use more mobile devices and consume internet bandwidth at ever-increasing rates as 5G is rolled out.
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While telecoms continue to rely on 4G for consumer use, 5G is on track to replace the outdated technology, albeit very slowly, with most deployments occurring in heavily populated urban areas. The 2009 introduction of the 4G/LTE standard was a game-changer for mobile devices, as it increased data rates and let users watch HD movies, play games, and transfer enormous amounts of data at about 33 Mbps. 5G surpasses the capabilities of 4G by employing microwave and mmWave technology to enhance its speed to at least 900 Mbps.
These speeds and bandwidth are equivalent to those of commercial broadband providers, enabling the expansion of applications beyond media streaming. IoT and connected gadgets will have sensing capabilities in real-time. Edge computing can leverage the cloud to acquire quick access to data. Providers of healthcare could obtain immediate information from people using medical devices. 5G has retail, industrial, agricultural, and manufacturing applications. The list is endless, but it realizes 5G's full potential until the new technology deploys globally.
It is challenging to predict what 6G will be capable of at this point, but if its deployment is anything like that of earlier standards, the impact might be enormous. During the rise of 5G, autonomous vehicles, drones, smart factories, and AI have gained significant traction. Some experts believe 6G could progress these applications even further, possibly utilizing artificial intelligence to ensure their flawless operation. Self-driving cars may employ collaborative AI for navigation, pedestrian object avoidance, and traffic updates. AI and edge computing enable equipment such as traffic and street lights to operate as networking antennas in nearby locations, enabling vehicles and individuals to keep a Wi-Fi connection.
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