Wi-Fi 6 is set to change the future of IoT—Here’s why (2024)

Wi-Fi® is more than an internet gateway for phones, tablets, and computers. It can be used to connect virtually every item imaginable. And with Wi-Fi 6, the true potential of the IoT can be fully realized.

This article appeared inElectronic Designand has been published here with permission.

Wi-Fi is easily one of the most widespread technologies ever invented, allowing for unprecedented connectivity across a near endless list of devices. With more than 450 million Wi-Fi hotspots expected to bedeployedin 2020 and aninstalledbase of more than 13 billion Wi-Fi devices, the technology is a global success story.

Its potential to transform industries is even greater than most realize. Wi-Fi is more than an internet gateway for phones, tablets and computers – it can be used to connect virtually every item imaginable. From household appliances to traffic signals and beyond, Wi-Fi is also building a path to the Internet of Things (IoT), which has evolved to allow for more robust applications. IoT is now capable of monitoring equipment to search for indications of failure. It can analyze the temperature of commercial refrigerators to prevent food from spoiling at restaurants and grocery stores. And it can keep a close eye on carbon-monoxide levels to ensure we aren’t at risk for CO poisoning.

These are all vital features that will shape the future of IoT, with many more benefits sure to follow. For example, HVAC units could be equipped with sensors to alert both commercial and residential users of problems that would otherwise go unnoticed. A good example involves what happens if the air-conditioning unit leaks refrigerant. More often than not, users will be unaware until the HVAC stops blowing cold air.

Similarly, if the pilot light goes out, users may not even know until they need heat. When equipped with the right sensors, these and other issues can be detected as soon as they materialize, paving the way for faster repairs.

This same technology can be applied to virtually any item: water heaters, pipes, gas lines, power lines—you name it and IoT-enabled sensors can be there to sound the alarm when something goes wrong. Most of those sensors will be battery-powered, though, which can be challenging when they’re attached to appliances that last for many years. Users can’t be expected to constantly monitor the battery life of their sensors, so they must be energy-efficient. With Wi-Fi 6 (the new IEEE 802.11ax standard), this is no longer a concern.

Wi-Fi 6 reinforces our belief that the technology is the premier option for IoT connectivity. Featuring data rates up to 10 Gbps with eight antennas, 160-MHz bandwidth, and 1024 QAM, the technology can serve power-hungry devices with large batteries, such as mobile phones, tablets, and laptops. It’s fast and reliable without draining too much power. But it can also serve reduced spec devices, such as those reaching 230 Mbps with only one antenna, 40 MHz, and 256 QAM. This allows for smaller, lower-powered devices to also enjoy the benefits of Wi-Fi 6.

And by operating at 5 GHz, Wi-Fi 6 avoids the highly congested 2.4 GHz frequency band. It was designed from the ground up to improve data throughput, increase robustness, and reduce power consumption without hindering performance.

Consistent throughput is crucial

A lot of hype has surrounded Basic Service Set (BSS) Coloring, and for good reason. This feature can alleviate the challenge of delivering consistent throughput in areas where there are multiple access points. Once we get back to having conferences, for example, large crowds of people may be trying to access the same network. This is very likely to reduce internet speeds – or worse, prevent users from connecting altogether – as data from different access points overlap, causing contention and interference.

Wi-Fi 6 uses the new BSS Coloring feature to colorize data from each access point, allowing clients to identify which one is transmitting. This results in improved network performance and much happier users.

No need to wake up early

Consumer devices have relied on “standby” and “sleep” functions to reduce battery consumption when not in use, and sensors should be no different. Wi-Fi 6 introduces a new feature called Target Wait Time (TWT) that allows access points to negotiate with attached devices to agree when they should wake up to transmit data.

As a result, devices can sit quietly in a deep sleep for long periods of time, significantly reducing current consumption, which in turn increases battery life. This could extend the battery’s lifespan to multiple years, allowing sensors to collect data in the field for much longer periods.

More features for superior performance

Wi-Fi 6 also comes equipped with orthogonal frequency-division multiple access (OFDMA), which improves performance in high-density environments. It enables bandwidth within channels to be segmented, enabling multiple devices to receive data in the same time frame.

Like other Wi-Fi 6 features, OFDMA reduces power consumption. The benefits here are twofold. With lower power consumption, developers can create smaller sensors with even smaller batteries. Alternatively, they could simply choose to keep the battery as is while benefiting from the reduction in power consumption, improving the sensor’s longevity. As IoT expands and more sensors are deployed (think automotive and other widespread applications), the tech would be impossible to maintain if the batteries needed to be changed every month.

Your future, more connected than ever

These are just some of the reasons why we’re convinced that Wi-Fi 6 will be the future of IoT device connectivity. By improving both energy efficiency and data throughput, it will be imperative to the industry – and a key technology to watch in 2020.

The statements and opinions by each Wi-Fi Alliance member and those providing comments are theirs alone, and do not reflect the opinions or views of Wi-Fi Alliance or any other member. Wi-Fi Alliance is not responsible for the accuracy of any of the information provided by any member in posting to or commenting on this blog. Concerns should be directed to [email protected].

Wi-Fi 6 is set to change the future of IoT—Here’s why (2024)

FAQs

Wi-Fi 6 is set to change the future of IoT—Here’s why? ›

Wi-Fi 6 reinforces our belief that the technology is the premier option for IoT connectivity. Featuring data rates up to 10 Gbps with eight antennas, 160-MHz bandwidth, and 1024 QAM, the technology can serve power-hungry devices with large batteries, such as mobile phones, tablets, and laptops.

Is Wi-Fi 6 the future? ›

WiFi 6E's use of the 6 GHz band is a significant leap forward, providing ample bandwidth for emerging technologies and high-demand applications. Organisations that adopt WiFi 6E can expect even greater performance improvements, future-proofing their networks for the next wave of wireless innovation.

Why is Wi-Fi 6 important? ›

WiFi 6 provides the fastest real-world speeds and range

WiFi 5 and WiFi 6 carry the highest number of streams, thus allowing for gigabit WiFi speeds. WiFi 6 increases the number of streams to a new high of 12 across the 2.4 and 5 GHz bands, whereas WiFi 5 has a limit of 8 in a dual band configuration.

Why is Wi-Fi important in IoT? ›

Wi-Fi offers extensive support for IoT applications

Wi-Fi CERTIFIED is a necessary ingredient in Matter certification for Wi-Fi devices, and together, Wi-Fi CERTIFIED and Matter ensure that IoT devices meet high standards for a seamlessly connected, interoperable home or workspace.

What is the impact of Wi-Fi 6? ›

Wi-Fi 6 has greatly improved performance by using two major technologies: MU-MIMO (multi-user, multiple-input, multiple-output technology), which allows more concurrent users to both upload and download data simultaneously; and OFDMA (Orthogonal Frequency Division Multiple Access), which doubles the number of resource ...

What is Wi-Fi 6 in IoT? ›

Wi-Fi 6 reinforces our belief that the technology is the premier option for IoT connectivity. Featuring data rates up to 10 Gbps with eight antennas, 160-MHz bandwidth, and 1024 QAM, the technology can serve power-hungry devices with large batteries, such as mobile phones, tablets, and laptops.

Is there a downside to Wi-Fi 6? ›

With more WiFi 6 devices hitting the market, users can expect a superior wireless experience. Still, the high cost of WiFi 6 routers and limited compatibility with older devices are drawbacks that need consideration before upgrading.

What is the meaning of IoT in Wi-Fi? ›

The term IoT, or Internet of Things, refers to the collective network of connected devices and the technology that facilitates communication between devices and the cloud, as well as between the devices themselves.

What are the pros and cons of Wi-Fi IoT? ›

The pros of IoT include easy access, smart cities, increased productivity, ease of communication, and money-saving. The cons of IoT include complexity, compatibility, privacy concerns, lesser employment, and technology addiction.

Does IoT need Wi-Fi? ›

Both cellular and WiFi networks are sufficient for most IoT projects. The protocols you use to transmit data will also have an impact here. Check out our guide on IoT protocols and standards to learn more.

How to benefit from Wi-Fi 6? ›

Wi-Fi 6's Improved Frequency Division

Wi-Fi 6 improves efficiency by doubling the number of downstream connections and upping the number of upstream connections by a factor of eight. It can also deliver four streams to a given device at the same time.

What is Wi-Fi 6 weakness? ›

Interference

Interference also has the capability to affect the Wi-Fi 6 signal strength. Electrical devices could create electromagnetic waves that will affect the Wi-Fi signals. If you're staying in crowded areas with many Wi-Fi devices, it can reduce the signal strength.

How much difference does Wi-Fi 6 make? ›

Wi-Fi 5 uses downlink MU-MIMO, while Wi-Fi 6 supports bidirectional MU-MIMO for both uplink and downlink capabilities. Wi-Fi 6 enables multiple users to upload and download data simultaneously, and Wi-Fi 5 can't. Wi-Fi 6's MU-MIMO capabilities are part of its promises to enhance speed.

Is Wi-Fi 6 still good in 2024? ›

Even though newer Wi-Fi 7 routers are hitting the market this year, Wi-Fi 6 is still the best value for most people.

Is there Wi-Fi 7? ›

With MLO (Multi-Link Operation), Wi-Fi 7 devices can simultaneously connect on two bands. This enables faster speeds through aggregation. Or, both bands can be used concurrently to share redundant/unique data for improved reliability with ultra-low and precise latencies.

Will Wi-Fi 5 become obsolete? ›

Wi-Fi 6E is already on the market, and Wi-Fi 7 is on the horizon. At this point, it's probably best to think of Wi-Fi 5 as an outdated standard. If you have it and it still works for you, no problem. But you'll eventually run into issues as you purchase newer devices.

What will replace WiFi in the future? ›

Light Fidelity, also known as Li-Fi, uses the power of light to transmit data. Unlike Wi-Fi, which uses radio waves to create a wireless connection, Li-Fi relies on light to transmit data. Through this process, Li-Fi promises speeds that are 100 times faster than Wi-Fi.

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