UQOMM

Underground communication for every industrial sector

Each industrial setting presents unique connectivity challenges. We design communication architectures that integrate different technologies to address the specific conditions of each operation, backed by more than 30 years of experience in the world’s most demanding environments.

+30

years designing communication architectures

5

industrial sectors served

+30

countries across five continents

+8

technologies integrated into a single architecture

UQOMM

Context

Industries operating in confined environments share a fundamental challenge: radio signals do not propagate. Yet the underlying causes, constraints, and appropriate solutions differ substantially.

In an underground mine, the challenge lies in solid rock hundreds of meters deep, potentially explosive atmospheres, and the need to maintain reliable communications at all times. In a vehicular tunnel, the challenge is ensuring simultaneous coverage for multiple radio systems, the driver’s phone, and FM, while complying with regulations that allow no exceptions. In an urban metro system, the priority is guaranteeing that the communications supporting the operation never fail.

UQOMM designs and integrates communication architectures tailored to the specific requirements of each sector. Before selecting any technology, we analyze the operation in depth: work schedules, emergency protocols, regulatory frameworks, required automation levels, and infrastructure growth plans.

Our 30+ years of experience have shown that no single solution fits all cases. What matters is the expertise to integrate the right technologies and engineer the communication architecture that best meets each operation’s challenges.

UQOMM

Sector ecosystem

Underground mining

The most demanding setting for industrial communications. Deep underground environments, continuously expanding galleries, potentially explosive atmospheres, and personnel whose safety relies on real‑time, dependable communications. For more than 30 years, UQOMM has designed and integrated communication systems for some of the world’s most complex underground mines, including copper operations in the Andes mountains, gold mines in Southeast Asia, and coal mines in South Africa.

Applicable technologies: Leaky Feeder, Private LTE, DAS/DRS, Underground Wi‑Fi and UWB, Private 5G, Mining IoT, Spread Spectrum, Digital Mining, and personnel/asset‑tracking systems.

Vehicular tunnels

Vehicular tunnels require communications that perform without failure in emergency situations, from firefighter radio to the driver’s phone. With demanding regulations and multiple systems sharing the same physical space, UQOMM designs communication architectures that integrate each technology and comply with the applicable standards, ensuring reliability for decades.

Applicable technologies: DAS/DRS, Leaky Feeder, and Private LTE.

Underground metro

Mass‑transit systems require mission‑critical communications to coordinate train operations, manage passenger flow, and support safety systems that must remain uninterrupted. UQOMM has designed and integrated communication solutions for metro and rail networks transporting millions of passengers annually, ensuring the highest levels of availability and safety.

Applicable technologies: Leaky Feeder, Private LTE, and DAS/DRS.

Complex buildings and parking facilities

High‑rise buildings, corporate facilities, and underground parking structures face a common challenge: radio signals cannot penetrate concrete, steel, or the multiple structural layers within these environments. UQOMM designs and integrates DAS systems that provide indoor coverage for mobile operators, emergency services, and mission‑critical communications, ensuring compliance with all applicable regulations.

Applicable technologies: DAS/DRS and Private LTE.

Offshore platforms

Offshore platforms bring together the challenges of mining and those of the marine environment: salinity, continuous vibration, extreme temperatures, and the isolation of operating far from shore. UQOMM adapts its communication architectures to ensure reliable operations even under some of the world’s most demanding conditions.

Applicable technologies: Leaky Feeder and DRS/DAS.

UQOMM

Matriz de sector por tecnología

Technology Mining Tunnels Metros Building Offshore
Leaky Feeder
Private LTE
DAS / DRS
Spread Spectrum
Personnel and asset localization
Digital Mining
Underground Wi-Fi
Private 5G
IoT for mining

UQOMM

FAQ

Underground mining is the most demanding environment because it brings together, in a single space, all the factors that hinder communication: increasing depth, long and branching galleries, heavy‑machinery vibration, dust, humidity, and extreme temperatures. In addition, the communication network must extend as the extraction front advances, which requires an architecture that can scale in real time. Human life depends directly on the system functioning at all times.

Safety regulations differ according to the country and the nature of the infrastructure, yet vehicular tunnels exceeding 500 meters generally require emergency communication systems that provide coverage for rescue radio (fire, police, civil protection), emergency telephony, and, in many cases, FM rebroadcasting. In Europe, frameworks such as the SEVESO Directive apply, while in Latin America compliance is governed by each nation’s specific regulations. We design each system to meet the regulatory demands of the market in which it will be implemented.

Although both operate underground, their priorities differ significantly. Vehicular tunnels focus on emergency coverage for vehicles and rescue agencies, governed by strict safety regulations. Metro systems additionally require mission‑critical communications for rail‑traffic control (TETRA, GSM‑R, or railway LTE), passenger‑management functions in stations, and integrated PA and CCTV systems. These operational priorities shape the architecture of each system.

Yes. We design and integrate DAS (Distributed Antenna System) infrastructures that extend mobile‑operator coverage throughout high‑rise buildings and underground parking structures. When required by regulation, we also incorporate emergency‑radio coverage. Each solution is tailored to the building’s architecture, minimizing disruption and ensuring continuous operation.

Offshore platforms combine constraints from the marine environment: salinity that degrades electronic components, constant vibration, extreme temperatures, and the impossibility of rapid maintenance in the event of a failure. Communications must also comply with SOLAS (Safety of Life at Sea) standards for safety in maritime environments.

Yes. We operate simultaneously in mining, tunnels, metro systems, high‑rise buildings, and offshore platforms, supported by specialized teams and a common engineering methodology. Our international presence and local teams in strategic markets allow us to execute projects in parallel and maintain long‑term support and maintenance agreements.  We carry out projects in mining, tunnel infrastructure, and urban systems in various countries. Our organizational structure enables us to manage multiple deployments simultaneously, supported by local teams in the key markets where we operate. We currently maintain active support and maintenance agreements in over 20 countries.

Timelines vary according to the sector, project complexity, and overall scope. A DAS deployment in a building can be completed within weeks, whereas a Leaky Feeder network in a growing mine expands progressively as the operation advances. In every case, implementation is staged to minimize disruption to existing operations and maintain uninterrupted service.

UQOMM

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