Showing posts with label 6G. Show all posts
Showing posts with label 6G. Show all posts

Tuesday, July 14, 2026

The Growing Realization That AI Needs Modernized High-Capacity Information Networks

It is becoming increasingly difficult to avoid discussions about artificial intelligence (AI). There is a growing consensus that AI broadly defined will have a major impact on virtually every sector of the economy. A growing number of experts believe that the impact will not stop there. Like railroads, electricity, telephones, steam engines, and the Internet, AI’s impact is expected to be large enough to affect the way we live. But, as Free State Foundation scholars have written, this will require massive investment to modernize the nation's information networks and to keep them robust.

Most of the attention on AI is focused on building models that will consume massive amounts of data and compute complex problems that are increasingly beyond the ability of humans to solve. A lesser concern has been the energy and, to a smaller extent, water networks required because of their role as major inputs into data centers and power plants. However, AI will also have a large impact on other networks. One of the most important will be the nation's information networks. 

 

In the past, most of the focus on networks has been on extending broadband to all people, a job that is nearing completion as broadband availability becomes ubiquitous. Over the past year or so an increasing number of leaders and organizations have begun to point out the strong interdependency of AI and the information networks. The result is a growing realization that the U.S. needs to devote an enormous amount of investment to networks that are larger, faster, and more self-aware than the existing infrastructure.

As stated above, there is already wide recognition of the strong linkage between AI and power supplies. For instance, Satya Nadella, CEO of Microsoft, has stated that the problem in the AI industry is not an excess supply of computation power, but rather a lack of power to accommodate all those CPUs. Jensen Huang, NVIDIA's CEO, has stressed that the U.S. is vulnerable because of its deficient energy supply. Finally, a report by the Center for Strategic and International Studies finds that the U.S. electricity sector is struggling to meet growing demand while maintaining low costs, improving system reliance, and reducing emissions.

Recently authoritative voices have expressed some of the same "supply-based" concerns about the information networks. These networks must convey, compute, and control massive amounts of data to massive amounts of computing power and back. Börje Ekholm, President and CEO of Ericsson, explained that “[a]s artificial intelligence (AI) moves beyond data centres into real-world applications like robotics, autonomous systems and extended reality, it depends on high-performance 5G today and 6G tomorrow.” John Saw, T-Mobile's President of Technology and Chief Technology Officer, believes that “6G to us is more than just an ‘XG.’ We think it's the foundation for an AI-native future that distributes intelligence across devices, the edge, and the cloud.” Finally, Ajit Pai, President and CEO of CTIA stated that: “AI without a strong wireless network is like a new car without a road.”

Others share these concerns. An informative report from the Fiber Broadband Association argues that “[t]wo historic trends are unfolding at the same time: the nationwide deployment of fiber broadband infrastructure and the rapid buildout of the infrastructure required to support artificial intelligence, quantum networking, and other emerging applications.” FBA's report says: “AI workloads require high-capacity east-west traffic within and between data centers. They require low-latency pathways between inference platforms and end users. They require resilient interconnection among geographically distributed facilities.” The report argues that the current grid is evolving from a centralized system into a highly distributed network incorporating renewable energy resources, battery storage systems, distributed generation, microgrids, and intelligent controls. Managing this complexity requires real-time visibility and coordination.

A recent CTIA report argues that AI requires networks to move data, coordinate real-time decisions, and interact with the physical world. In turn, wireless networks rely on AI to manage the surging complexity and record traffic driven by AI’s own insatiable data demands:”

[I]t is now clear that AI traffic will strain existing wireless networks before the decade is out with huge new data needs, entirely new traffic patterns, and novel demands on wireless networks to do more than simply carry traffic….

[I]t will also require emerging 6G networks to be AI-native from the ground up with embedded intelligence to dynamically allocate spectrum, anticipate congestion, sense the physical environment, coordinate edge-compute workloads, and secure devices—all at machine speed.

Two final points. To maximize AI’s performance, the most important parts of the networks have to work differently than current networks. They will feature more east-west flows, lower latency, higher uploading speeds, and the ability to operate independently of humans. Second, the networks will have to be closely integrated into those of other industries, including healthcare, transportation, government services, and (of course) electricity.

In fact, building out modernized networks will require both fiber and wireless technology, as well as a lot of other inputs. Success will require massive investments in these modernized networks, most of which will come from the private sector. Given the large economic and security implications, public policy should concentrate on creating favorable conditions for private sector investment and working with allies to develop common standards and protections.

 

Friday, May 08, 2026

AI Plus 6G: A Convergence of Mutual Necessity

In conjunction with its annual summit on May 6, CTIA issued a new report devoted to the ongoing merger of wireless technology and AI: Wireless & AI: Driving the Future of Innovation. The report points to the growing co-dependency between the data networks (wired and wireless) and artificial intelligence (AI), a technological advancement that promises to create great value. In doing so, the report discusses several main points that are likely to drive the future of both AI and broadband.

The first principle, which I discussed in an FSF Perspectives earlier this year, is that AI and networks are increasingly interdependent. As the CITA report mentions: “AI requires wireless networks to move data, help coordinate real-time decisions and operate effectively with the physical world. In turn, wireless networks rely on AI to manage the surging complexity and record traffic driven by AI’s own insatiable data demands.

AI without data networks is useless. AI needs the models to download vast amounts of data of all types (code, text, sound, and visual), transport them to any location, process the information, transmit the analysis, and increasingly, act on the results itself without human intervention, a phenomenon the report refers to as "Physical AI." AI will operate across three layers; devices, edge, and the cloud, depending on the speed, complexity, and cost of the task.

Second, the dependence is two-way. While AI is heavily dependent on communications networks to maximize its use of data, the rapid increase in AI’s use of networks demands that the networks use AI to maximize their capacity in the form of transmission capacity, latency, and compute power. Just as the global power of AI depends on networks’ capacity, that capacity must use AI to expand in order to meet these increased needs. 6G networks will respond dynamically to the conditions and demands facing them. Already some are predicting that by the end of the decade one-third of AI traffic needs could go unmet. Accenture estimates that this could reduce potential GDP by $1.4 trillion.

The third point is that the physical merger is already occurring. 6G networks will increasingly connect with a wide variety of machines and sensors. Unlike existing networks, AI will require massive amounts of data to be uploaded into communications networks for analysis. AI traffic is expected to power 75 percent of smartphones within two years. Already, AI traffic is growing three times faster than overall traffic and is expected to account for 30 percent of networks’ traffic by 2034. Finally, 6G networks are expected to increase energy efficiency by 30 percent.

These advancements impact economic growth and national security. AI and wireless are the two top sources of infrastructure investment in the current economy, offsetting some of the uncertainty caused by higher consumer prices and international conflict. The significant dual use capability of AI and network advancements creates significant security implications and places a premium on intelligent and timely regulation. The world’s complexity increasingly cannot be resolved by humans manually reacting to data flows that move faster than human reaction time.

The report focuses on two major areas for policy reform. The first is the allocation of large contiguous blocks of licensed spectrum. The value of spectrum has grown rapidly due both to new uses and the increased capacity of existing uses. As a result, the allocation of spectrum is attracting increased demands from government, industry, and consumer use. The sooner Congress and regulators can develop methods for allocating spectrum to its most valuable uses, the better. The report points to next year’s World Radiocommunication Conference as an important milestone for developing a Western response to international policy.

Finally, permitting reform will also play a large role in determining the pace of innovation. Companies frequently need government approval at the federal, state, or local level before they can start building out Internet infrastructure, whether in the form of home broadband, data centers, or transmission lines. At the state and local levels it is not uncommon for agency officials to demand high fees or costly extraneous requirements as a condition to start construction. While some progress has been made at the federal level, state and local entities still impose significant delays. Both the FCC and Congress need to continue to remove impediments and implement meaningful permitting reform.

The ongoing merger of the communications networks (including eventually 6G) and AI will have vast implications for society. Machines will gather more information, transmit it widely, analyze any correlations within it, and act on the results. This will dramatically expand the information available to humans. The challenge is to use it wisely and for the benefit of all. AI without reliable, secure, high-capacity communications networks is useless, but the networks without AI will collapse.

Tuesday, April 29, 2025

House Passes Bill for 6G Task Force and Report

On April 28, the U.S. House of Representatives passed, by a unanimous voice vote, H.R. 2449 – the "Future Uses of Technology Upholding Reliable and Enhanced Networks Act" or the "Future Networks Act." Sponsored by Rep. Doris Matsui and co-sponsored by Reps. Rick Allen and Tim Walberg, the Future Networks Act, if it were to be passed by Congress and signed into law by President Donald Trump, would direct the FCC's Chairman to appoint a "6G Task Force" that would prepare and send to Congress a report on developing standards, uses, and related issues involving future 6G wireless networks. 

Under the bill, the members of the 6G Task Force would include representatives of the communications industry, public interest organizations or academic institutions, and representatives of federal, state, local, and tribal governments. The Future Networks Act requires that, within 180 days of the 6G Task Force being established, the group prepare a draft report on 6G wireless technology. The draft report would be published on the FCC's website and in the Federal Register for public comment Following the public comment period, and within 1 year of the 6G Task Force being established, the group would publish their final report and submit it to House and Senate Committees. 

The development of 6G technologies, standards, and spectrum policies no doubt will be a multi-faceted and complex undertaking. A future 6G report by the type of task force proposed in the Future Networks Act could serve as a valuable storehouse of knowledge for Congress, the FCC, and the Executive Branch and help pave the way for a successful eventual launch of 6G wireless networks. Now that the Future Networks Act has passed the House, the Senate should give the bill due consideration. 

 

In an April 2023 blog post, Free State Foundation President Randolph May identified the restoration of the FCC's authority to conduct competitive bidding spectrum license auctions as essential for future 6G network deployment. However, in the near term, there are many opportunities for expanding 5G networks by repurposing spectrum from government use to private use. Seizing those opportunities depends not only on a replenished spectrum pipeline but revival of the Commission's auction authority. The 119th Congress should restore the FCC’s authority on spectrum license auctions and encourage timely replenishment of the spectrum pipeline. 

Thursday, May 11, 2023

FCC Set to Vote on Future Spectrum Use in the 12.2 GHz and 12.7 GHz Bands

At its May 18 public hearing, the FCC will be voting on a Report and Order and Further Notice of Proposed Rulemaking regarding use of spectrum in the 12.-12-7 GHz (12.2 GHz) band. The draft Report and Order, if approved by the Commission, would not authorize high-powered terrestrial mobile broadband services to operate in the 12.2 GHz band. The Report and Order cites apparent concerns about significant risk of harmful interference with existing and emergent services that use the 12.2 GHz band, including satellite services, as the basis for that policy conclusion. However, the Report and Order would continue investigation into the potential for terrestrial fixed use or unlicensed use in the 12.2 GHz band.  

The 12.2 GHz item now teed up for the Commission's May 18 public meeting also includes a Notice of Proposed Rulemaking and Order regarding expanded use of the 12.7-13.25 GHz (12.7 GHz) band for mobile broadband or other use. In its draft NPRM and Order, the Commission states:

[W]e propose to repurpose some or all of the 550 megahertz of mid-band spectrum for mobile broadband or other expanded use. The record demonstrates substantial support for repurposing these mid-band frequencies for next-generation wireless technologies including 5G, 5G Advanced, and 6G services that will depend on extremely high data rates, and the reliability, low latency, and capacity that the 12.7 GHz band spectrum can provide.

Without expressing any view on the merits of the Commission's determinations about potential significant harmful signal interference in the 12.2 GHz band or on any specific proposals for future use in the 12.7 GHz band, the Commission's forthcoming vote on the 12.2 GHz and 12.7 GHz bands is important because it is a step toward maximizing use of those valuable mid-band spectrum resources. The NPRM and Order on the 12.7 GHz rightly recognizes the significance of mid-band spectrum for the future of commercial wireless services in the U.S. And with the 12.2 GHz/12.7 GHz item scheduled for a vote on May 18, Commission appears to making a good faith effort to fulfill its public trust to promote valuable use of spectrum. 

Friday, September 14, 2018

Commissioner Rosenworcel Is Already Looking Towards 6G


At the September meeting, the FCC will vote on the Wireless Infrastructure Order that would reduce state and local barriers to small cell deployment by limiting pole attachment fees and streamlining administrative processes. Adoption of this Order undoubtedly would advance the implementation of 5G wireless technology throughout the United States.
But interestingly, FCC Commissioner Jessica Rosenworcel is already looking towards 6G. In a speech at the Mobile World Congress Americas on September 13, Commissioner Rosenworcel said that the FCC should revisit spectrum policy of the future, particularly with relation to valuation, auction, and distribution.
With regard to spectrum distribution, Commissioner Rosenworcel said the FCC should consider using blockchain as a way to enable smarter and more decentralized dynamic spectrum access techniques:
Blockchains are distributed databases that can be securely updated without central intermediaries. That makes them ideal for a bunch of uses—and everyone has a blockchain idea right now. So here’s mine: Instead of having a centralized database to support shared access in specific spectrum bands, we could explore the use of blockchain as a lower-cost alternative. If the effort succeeds, this could reduce the administrative expense of dynamic access systems and increase spectral efficiency. We also could foster new hierarchies of band-specific rights and new models for lightweight leasing. Plus, the public quality of recording this information using distributed ledger technology could help expose patterns that inspire new technical innovation and even change the way we use wireless.
The FCC still must continue to reduce regulatory barriers to small cell deployment and promote the advancement of 5G wireless technology throughout the U.S. But it is also important that FCC Commissioners are looking towards the future to ensure that the wireless market will experience a smooth transition from 5G to 6G.
Kudos to Commissioner Rosenworcel for her forward-looking ideas!