DoD starts 3 new projects to advance 5G-to-NextG wireless technologies

The Department of Defense’s Innovate Beyond 5G (IB5G) Program recently kicked off three new projects that continue to advance DoD collaborative partnerships with industry and academia for 5G-to-NextG wireless technologies. 
AT&T and DoD demonstrates 5G-enabled smart warehouse
AT&T and DoD demonstrates 5G-enabled smart warehouse

The Department of Defense’s Innovate Beyond 5G (IB5G) Program recently kicked off three new projects that continue to advance DoD collaborative partnerships with industry and academia for 5G-to-NextG wireless technologies. 

Dr. Sumit Roy, IB5G Program Director said, “The DoD has a vital interest in advancing 5G-to-NextG wireless technologies and concept demonstrations. These efforts represent our continuing investments via public and private sector collaboration on research & development for critical Beyond 5G technology enablers necessary to realize high performance, secure, and resilient network operations for the future warfighter.”


Open6G is a new industry-university cooperative effort that aims to jumpstart 6G systems research on open radio access networks (Open RAN).  The effort will focus on Open RAN research and open source implementation of 5G protocol stack features to support emerging beyond/enhanced 5G applications.  Open6G will serve as the DoD’s hub for development, testing, and integration of trusted enhancements, supporting an industry and federal government NextG ecosystem pursuing 6G technology goals. Led by a $1.77 million anchor award from IB5G, the project is managed by Northeastern University’s Kostas Research Institute through a cooperative agreement with the Army Research Laboratory. The technical effort will be housed at Northeastern University’s Institute for Wireless Internet of Things.  

IB5G also started a new Spectrum Exchange Security and Scalability project with Zylinium Research. Spectrum-sharing technologies are becoming more critical as wireless networks face increasing user demand.  Zylinium Research developed Spectrum Exchange—a network service appliance that receives, schedules and allocates spectrum resources—in response to this need.  Zylinium Research recently demonstrated Spectrum Exchange for dynamic spectrum allocation on the Platform for Open Wireless Data-drive Experimental Research (POWDER) at the University of Utah, which is part of the Platforms for Advanced Wireless Research program funded by the National Science Foundation. This current effort will leverage blockchain in order to provide data persistence, scalability, and robustness to create a secure and distributed Spectrum Exchange.  Zylinium’s Spectrum Exchange research was funded $1.64 million by the Office of the Under Secretary of Defense for Research and Engineering (OUSD(R&E)), representing a prime example of government inter-agency and industry collaboration in the interest of advancing spectrum sharing techniques and machine-driven network capabilities.

IB5G, in collaboration with Nokia Bell Labs, also established the resilient, large-scale, Massive Multi-Input/Multi-Output (MIMO) from MHz to GHz project. Massive MIMO is a critical enabler for the warfighter due to its ability to increase resiliency and throughput for wireless tactical communications. This project was awarded $3.69 million by OUSD (R&E)/IB5G under an Open Broad Agency Announcement solicitation for Advanced Wireless Communications research. The effort will explore key technology components that enable scaling MIMO technology across different bands/bandwidths and DoD-oriented use cases. 

About USD(R&E) 

The Under Secretary of Defense for Research and Engineering (USD(R&E) is the Chief Technology Officer of the Department of Defense. The USD(R&E) champions research, science, technology, engineering, and innovation to maintain the United States military’s technological advantage. Learn more at www.cto.mil, follow us on Twitter @DoDCTO, or visit us on LinkedIn at https://www.linkedin.com/company/ousdre.


Recent Content

Qualcomm teams up with Lenskart to introduce AI-driven smart glasses to India, leveraging Snapdragon XR platforms for immersive AR, VR, and MR experiences. With over 100 devices already powered by Snapdragon XR and a strong push for localized innovation, Qualcomm is betting big on spatial computing as the next phase of everyday tech.
Europe’s 5G progress is accelerating but unevenly. Denmark, Sweden, and Spain lead with strong 5G availability and SA deployment, driven by early spectrum allocation and targeted policy. Meanwhile, the UK, Belgium, and Hungary trail due to regulatory delays, infrastructure bottlenecks, and weak investment. With the Digital Decade 2030 goal in sight, aligning on policy, spectrum, and subsidies will be key to closing the EU’s internal 5G divide.
Many fiber rollouts stumble before trenching begins, not in the field, but in flawed planning rooms. This article uncovers why approved designs collapse under real-world conditions, how disconnected inventories and outdated GIS layers set projects up for failure, and why simulation, permitting, and collaboration must start early. Learn how telecom teams can replace static spreadsheets with live intelligence—and why VC4’s Service2Create rewrites the rules of fiber network planning.
Charter Communications warns of a 200% increase in targeted fiber attacks across Missouri in 2025, calling them acts of domestic terrorism. With 148 outages already reported, these incidents have crippled emergency services, hospitals, and financial systems—raising alarm over national infrastructure vulnerabilities and sparking legislative debate.
5G-Advanced is redefining mobile networks through AI-native intelligence, sustainability, and advanced capabilities like XR support, NTN integration, and low-latency industrial IoT. Built on 3GPP Releases 18–20, it enables predictive automation, 30% energy savings, and sets the stage for 6G.
Memphis Light, Gas and Water (MLGW) and Nokia have launched the first standalone private 5G network by a U.S. municipal utility. This $31 million investment will modernize infrastructure across Memphis and Shelby County, enhancing real-time monitoring, outage response, cybersecurity, and smart grid capabilities for over 420,000 customers.
Whitepaper
Explore how Generative AI is transforming telecom infrastructure by solving critical industry challenges like massive data management, network optimization, and personalized customer experiences. This whitepaper offers in-depth insights into AI and Gen AI's role in boosting operational efficiency while ensuring security and regulatory compliance. Telecom operators can harness these AI-driven...
Supermicro and Nvidia Logo
Whitepaper
The whitepaper, "How Is Generative AI Optimizing Operational Efficiency and Assurance," provides an in-depth exploration of how Generative AI is transforming the telecom industry. It highlights how AI-driven solutions enhance customer support, optimize network performance, and drive personalized marketing strategies. Additionally, the whitepaper addresses the challenges of integrating AI into...
RADCOM Logo
Article & Insights
Non-terrestrial networks (NTNs) have evolved from experimental satellite systems to integral components of global connectivity. The transition from geostationary satellites to low Earth orbit constellations has significantly enhanced mobile broadband services. With the adoption of 3GPP standards, NTNs now seamlessly integrate with terrestrial networks, providing expanded coverage and new opportunities,...

Download Magazine

With Subscription

Subscribe To Our Newsletter

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