DoT invites enterprises to the demand study for private 5G networks

DoT invited applications from enterprises willing to set up private 5G networks to undertake demand studies for direct spectrum assignment.
DoT invites enterprises to the demand study for private 5G networks
DoT invites enterprises to the demand study for private 5G networks

Theย Department of Telecommunicationsย (DoT) has invited applications from enterprises willing to set up captive non-public networks to undertake demand studies for the direct assignment of spectrum to entities. Enterprises with a net worth of more than Rs 100 crore and willing to set up captive non-public networks by obtaining spectrum directly from the DoT are invited to participate in the exercise.


The government issued the ‘guidelines for Captive Non-Public Network (CNPN) license’ on June 27, intending to establish the legal framework for CNPNs. “The guidelines provide that the enterprises seeking to establish CNPN may obtain spectrum on lease from telecom service providers or directly from DoT. These guidelines also provide that the DoT will undertake demand studies for direct assignments of the spectrum to enterprises setting up CNPNs,” the statement said.

DoT has launched a module on theย Saralsanchar portalย for carrying out demand studies. Eligible enterprises must submit particulars together with possession, web value, and spectrum requirement in numerous bands, amongst different issues. The Department of Telecommunications has clarified that participation in this exercise shall not entitle the enterprises to any claim for any spectrum assignment.ย 

The applications can be submitted between August 10 to September 9. 

COAI demanded tough conditions for private 5G networks

Despite opposition by incumbent telecom operators, the DoT has come up with the provision of direct spectrum allocation to enterprises for CNPN. The Cellular Operators Association of India (COAI) had demanded the imposition of tough conditions for allowing enterprises to set up “captive non-public networks.” The DoT must also seek TRAI’s view on the price at which the spectrum should be allocated to the enterprises.

DoT secretary K Rajaraman wrote letter to COAI on June 18, demanding non-assignment of spectrum in the non-IMT (International Mobile Telecommunications) 5G bands reserved for telcos. It also demanded restricting the scope of private networks for machine-to-machine (M2M) communications and plant automation within the premises of a plant.

COAI also wants to ensure the private networks are not connected have to PSTN (Public Switched Telephone Networks), cloud platforms, another private networks, or multiple buildings and offices. COAI also requested that the spectrum assigned to end users should not result in the creation of 3rd-party or intermediaries who operate the network on behalf of the enterprises. The primary reason is that the creation of third parties or intermediaries installing and operating the network for private networks would “result in the back-door entry for 3rd parties to act as Communications Service Providers (CSPs) without purchasing the spectrum through the auction process as the CSPs.”

Therefore, the private network owners “must own all equipment installed for private networks and not obtain them on rental/lease from 3rd party players.” If the enterprises want to do so, they must also obtain the spectrum through the same auction process as the CSPs. If implemented, the move could keep competitors like global tech companies Google, Amazon, or IT companies from providing services to the enteprises. It would also restrict the collaboration for enterprises only to a few CSPs.

In the letter, the CSPs have also said that use cases meant for wider mass cannot be part of a captive 5G network. CSPs have highlighted that there has been demand from some stakeholders that captive networks could create use cases for financial inclusion and agriculture sector connectivity. They have mentioned that since financial inclusion by design intends to include 100 percent of the population, and the agriculture sector would need interconnection of 70 percent of the population, captive networks cannot undertake such use cases.

Also, stakeholders demand to allocate spectrum to set up private networks for vehicle-to-vehicle connectivity, controlling drones, and M2M connectivity from devices cannot be allowed. Justifying its stand that no IMT band spectrum should be assigned to captive networks, COAI has said there is already a shortage of harmonized spectrum for TSP networks. Currently, only the 3.3 GHz mid-band and the 2.85 GHz have been auctioned in 5G. However, if other bands likely to be identified for IMT are not reserved, it would constrain TSPs.

They would then be unable to adequately plan their networks to meet customer demand. However, the TRAI (Telecom Regulatory Authority of India) has ignored the issue while recommending 3.7-3.8 GHz and 28.5-29.5 GHz for private captive networks. The COAI also requested private networks to ensure that there is no interference to other networks. Also, it said that they should ensure compliance with electromagnetic field (EMF) norms and subscriber verification rules and follow all security norms, among others. It added that they should also come under lawful interception requirements and follow rollout obligations like CSPs.


Recent Content

Connecting the unconnected requires more than just broadband buildout. National digital inclusion strategies focus on affordability, digital skills, devices, and sustainable infrastructure to empower all communities. Learn how federal programs, state initiatives, and public-private partnerships are reshaping broadband access across America.
The fiber, data center, and telecom sectors are evolving rapidly amid rising AI workloads, cloud expansion, edge computing, and new investment models. This article breaks down the key trends โ€” from fiber deployments in rural markets to secondary data center expansions and telecoms shifting to platform-based services, that are reshaping digital infrastructure for a hyperconnected future.
AI promises major gains for telecom operators, but most initiatives stall due to outdated, fragmented inventory systems. Discover why unified, service-aware inventory is the missing link for successful AI in telecomโ€”and how operators can build a smarter, impact-ready foundation for automation with VC4’s Service2Create (S2C) platform.
As networks grow more complex, traditional management models fall short. This article explores how AIOps (Artificial Intelligence for IT Operations) enables autonomous networks that self-configure, self-optimize, and self-heal. Learn how service providers can use AIOps frameworks to achieve predictive maintenance, dynamic resource management, enhanced customer experiences, and operational scalability to thrive in the era of 5G, IoT, and beyond.
Batelco by Beyon and Nokia are partnering to launch Bahrainโ€™s first private 5G network at Aluminum Bahrain (Alba). The network will drive smart manufacturing through real-time monitoring, automation, and AI-driven analyticsโ€”paving the way for Albaโ€™s digital transformation and advancing Bahrainโ€™s Industry 4.0 strategy.
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