Private Network Check Readiness - TeckNexus Solutions

The 5G Journey: Progress, Potential, and the Road Ahead

This article delves into the development of 5G networks, the challenges they face, and the implications for the future of cellular technology.
5G - TeckNexus

​The cellular industry’s 5G network rollout is now several years underway, and while the search for a revolutionary use case that will solidify 5G’s position in cellular technology continues, it is fundamentally achieving its intended purpose—albeit with some caveats.


5G networks generally provide improved and faster service compared to 4G. However, Ookla’s speed test data reveals that 5G networks’ upload and download times generally declined worldwide compared to a year ago. Moreover, even the strongest 5G networks barely reach 1 gigabit per second, falling short of the International Telecommunication Union’s (ITU) ideal download speed of 20 Gbps.

The issues faced by 5G networks mirror those experienced by previous cellular generations. As more customers purchase new devices compatible with these networks, capacity is strained, necessitating network densification. In addition, the lack of millimeter wave network development has also exacerbated 5G’s growing pains.

According to industry analyst Mark Giles, most network operators started their 5G rollouts with non-standalone 5G networks built on top of existing 4G infrastructure. While more cost-effective, this approach has limited deployments, as operators can only build 5G networks where they have existing infrastructure. Additionally, regulatory and permitting challenges have hampered network expansion, particularly in dense urban areas.

In suburban and rural areas, the appeal of 5G is its ability to access new spectrum bands, most notably the millimeter wave band (24 GHz to 40 GHz), which supports lower latencies and greater data rates. However, higher frequencies only travel a little, which is favorable for cities but not for less urbanized areas.

Consequently, network performance is expected to degrade as more people in various locations begin using 5G networks.
Millimeter wave technology has seen limited uptake outside a few countries, including the United States. Companies like Verizon have pivoted to other new bands, such as the C-band (4 to 8 GHz). As of 2022, only 28 operators in 16 countries are deploying millimeter wave technology, according to the Global mobile Suppliers Organization (GSA).

While the ITU’s aspirational 5G download speed of 20 Gbps remains attainable, many countries’ median 5G network experiences still need to meet the organization’s user experience data rate benchmark of 100 Mbps down and 50 Mbps up. Speed test data from Ookla identifies Canada, Italy, Qatar, and the US as countries with improving 5G network performance, though Giles doesn’t believe there is a common factor among them.

For the US, Giles suggests that more availability of new spectrum has helped operators stay ahead of growing congestion on new networks. In contrast, Qatar’s massive investment surrounding the 2022 FIFA World Cup included building robust 5G networks.

It is bit early to determine the impact of 5G’s early challenges on 6G development, but several possible implications exist. First, the industry may devote less time to terahertz wave research due to the lackluster debut of millimeter wave technology and instead consider merging cellular and Wi-Fi technologies for dense coverage areas.

Giles believes the degradation of 5G networks highlights the disconnect between the ambitious vision for these technologies and the reality on the ground. Furthermore, this gap serves as a reminder that achieving the full potential of 5G technology will require overcoming various challenges and adapting to the evolving needs of users and communities.


Recent Content

Americans spend $166 billion annually on mobile phone services, making up 4% of all household bill expenses. A new doxoINSIGHTS report reveals median monthly costs of $96, with wide variations by state and city. Nebraska and Dallas top the charts, while tools like doxoINSIGHTS help users compare costs and save on mobile bills.
At the 2025 MLB All-Star Week, T-Mobile deployed a 5G Private Network to power Automated Ball-Strike (ABS) technology, immersive fan experiences, and smart event operations. Covering Truist Park and The Battery Atlanta, the network delivered ultra-low latency, network slicing for first responders, and high-speed 5G upgrades, creating a blueprint for future smart stadiums and live sports innovation.
Sedna Africa and Cornelder de Moçambique are deploying a private LTE/5G network at Beira Port to enhance safety, operational efficiency, and support Industry 4.0 initiatives. The network enables real-time tracking, IoT-based safety systems, and predictive maintenance as Mozambique invests $290M to expand port capacity.
Connected aviation is transforming airports with secure private networks, IoT, and real-time data. This article unpacks how smart airports boost efficiency, safety, and passenger experience while unlocking new business value with real-world case studies from Heathrow, Changi, Dubai, and more.
Connected aviation is reshaping airports into smart, seamless ecosystems inside and outside the terminal. This case study reveals how hubs like Changi, Schiphol, and SAN use private networks, IoT, and cross-team collaboration to improve passenger flow, airside operations, sustainability, and safety.
Connected aviation is reshaping airports with autonomous systems, from security drones to robotic baggage vehicles and self-driving tugs. Automation improves safety, cuts turnaround times, and delivers a smoother passenger experience. Learn how airports use AI and robotics to stay competitive.
Whitepaper
Dive deep into how Radisys Corporation is navigating the dynamic landscape of Open RAN and 5G technologies. With their innovative strategies, they are making monumental strides in advancing the deployment and implementation of scalable, flexible, and efficient solutions. Get insights into how they're leveraging small cells, private networks, and strategic...
Whitepaper
This whitepaper explores seven compelling use cases of AI-infused automated service assurance solutions, encompassing anomaly detection, automated root cause analysis, service quality enhancement, customer experience improvement, network capacity planning, network monetization, and self-healing networks. Each use case explains how AI, when embedded in a tailored assurance solution powered by extensive...
Radcom Logo

It seems we can't find what you're looking for.

Download Magazine

With Subscription

Subscribe To Our Newsletter

Private Network Awards 2025 - TeckNexus
Scroll to Top

Private Network Awards

Recognizing excellence in 5G, LTE, CBRS, and connected industries. Nominate your project and gain industry-wide recognition.
Early Bird Deadline: Sept 5, 2025 | Final Deadline: Sept 30, 2025