The emergence of the WiFi 6 standard was an important step towards a globally interconnected and technologically intelligent world. However, the methods for maximizing digital performance are very individual. To use the full potential of the WiFi 6 standard, it is necessary to conduct an individual analysis of each company wishing to install this technology, and confirm each project individually.
The WiFi 6 standard will increase the popularity of the Internet of Things and pave the way for a whole new level of mobility, scalability, security and agility. This requires the design of a new technology infrastructure compatible with the WiFi 6 standard within the improved network. It must meet the specific needs of the company and be properly integrated. It basically supports all digital trends that are currently improving and accelerating business. However, the art of using the advantages of the WiFi 6 standard lies not only in its implementation, but also in its integration into the entire network. The new 802.11ax standard, often referred to as WiFi 6, has solved the main problem in wireless networks in terms of capacity. In the future, every connected device and service will have exactly the bandwidth it needs. As a result, it is no longer the case that a smart bulb, which requires a relatively small transmission capacity, reduces the capacity required for a closely connected laptop. Future technologies such as augmented reality, 4K resolution, machine learning or artificial intelligence require more transmission capacity, higher levels of parallel data transfers and also lower latency. Unlike WiFi 6, it is difficult for traditional wireless networks to meet these requirements. The good news is also the increased support for multi-user systems, which reduces network congestion and thus the risks of bottlenecks in high-density environments, and eliminates bottlenecks in wireless networks.
Since the main advantage of the WiFi 6 standard lies in the improved efficiency and capacity of wireless networks, we expect to roll it out first in buildings such as large transportation hubs, public places, universities and other schools. Soon thereafter, WiFi 6 infrastructure can be used in high-rise buildings, smart manufacturing, and healthcare. Use by service providers and the hospitality sector will be of particular interest. For entrepreneurs working in this sector, the WiFi 6 standard provides the opportunity to operate in a more sustainable manner, reduce operating costs and benefit from potential savings, especially in the long term. The speed and efficiency of network technology are critical success factors in the industry, as visitors and internal digital processes are a constant source of data and processing requirements. It is the responsibility of companies to be able to filter and respond to this data as quickly and accurately as possible. In this context, network access for employees, who are often on the road or working from remote places in the performance of their tasks, plays a major role, and even in this case, the WiFi 6 standard provides a significant improvement. In areas of business where customization is key or databases are constantly being created and updated, companies need to ensure that their systems can handle not only the volume of data itself, but its scaling as well. Ever-increasing data volumes mean that digital infrastructure must not only be faster, but also be efficient. All this requires high-quality, reliable networks, online security, and failure protection.
Another issue that needs to be addressed is security. Reducing the risks associated with big data is particularly challenging for public administrations and institutions, especially universities and other schools. Even this digital environment cannot do without a very high level of quality, speed, organization and efficiency. To do this, of course, it is necessary to provide the best possible security. The WiFi 6 standard is designed to be able to do more than just transfer data to specific industries and speed up operations. Proof of this is, among other things, its ability to support data storage and management, facilitate network maintenance, contribute to knowledge sharing and acquisition, and enable virtually unlimited interactions in a networked world.
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