Cleo SystemCleo System

Product

Pilot

Telecommunications & Remote Infrastructure Automation

Real-time environmental tracking and autonomous control across large distributed estates of base stations and fiber-optic cabinets, minimizing costly site dispatches.

Who It Is For

  • Telecommunications operators
  • Owners of distributed remote network infrastructure

The Challenge

Base stations, towers and fiber cabinets are spread across remote sites, many of them unmanned, and managing them is often reactive, manual and costly. Sending a technician to a remote site is expensive and inefficient. Power, climate or equipment faults detected late become prolonged outages, which cost revenue and customer trust. Unmanned sites are exposed to equipment theft and vandalism. And where power, security and climate run on separate systems, the data sits in silos and no one sees the site as a whole.

The Telecommunications & Remote Infrastructure Automation Answer

The service monitors power, environment and security at each site and controls site equipment remotely. Temperature, power consumption and equipment health are tracked continuously from a central dashboard. Decisions such as adjusting HVAC are made at the site itself, so they continue when network connectivity is lost.

Impact

It is designed to support network uptime and to deter and detect theft.

Capabilities

What Telecommunications & Remote Infrastructure Automation Actually Does

GSM Base Station Monitoring

Monitoring of power, environment and security at each base station.

Tower Security & Access

Intelligent lock systems and perimeter surveillance at tower sites.

Fiber Optic Cabinet Access

Securing fiber-optic cabinets, with access controlled remotely.

Asset Protection

Designed to deter and detect theft.

Energy Optimization

Automated HVAC and generator management.

Network Resilience

Edge computing at the site that keeps running when network connectivity is lost.

Remote Fault Handling

Faults at base-station sites and fiber cabinets can be handled remotely.

Protocol Bridging at the Edge

Bridges wired and wireless field protocols at the site, forwards SNMP traps and runs programmable scenarios between connected systems.

Scenario Walkthrough

It is built for large distributed estates of unmanned telecom sites: base stations, towers and fiber cabinets.

Industries

  • Telecommunications

Architecture / Technology

Three layers. At the site, industrial-grade sensors and controllers: analog and digital sensors, cameras, LoRaWAN and ZigBee devices, HVAC controllers, GPS and RFID. Above them, field management devices with embedded processing make decisions in real time, offline if need be, running on-device AI on an embedded Linux OS. At the top, a web-based platform for centralized monitoring and control, with real-time dashboards, mobile apps and SLA tracking.

Replaces, Sits Beside, Integrates With

Integrates with

  • Inventory systems
  • SNMP-based network management, through forwarded traps

Under the hood

Technical Details

Sites
GSM base stations (BTS), towers and FTTx fiber cabinets
Networks
GSM (2G/4G/5G), fiber, satellite and LoRaWAN, with automatic failover to battery backup
Network failover
Multi-network failover across GSM, Ethernet and WiFi
Field protocols
RS232, RS485, Modbus, M-Bus, WM-Bus, BACnet/IP, LoRaWAN, ZigBee, Bluetooth, IR
Network management
SNMP traps
Edge processing
Embedded processing with on-device AI on an embedded Linux OS
Site equipment
HVAC, generators and intelligent locks

Security, Compliance and Data Handling

Physical security
Camera surveillance, door sensors and intrusion detection
Network security
Firewalls and access control

Scale and Limits

Operating temperature, field hardware
−40°C to +85°C

Comparison

Cloud-dependent architectureEdge architecture
When connectivity dropsStops making decisionsKeeps making decisions locally

Fact Sheet

For
Telecommunications operators and owners of distributed remote network infrastructure
Sites
Base stations, towers and fiber cabinets
Monitors
Power, environment and security
Controls
HVAC, generators and site access
Offline
Decisions continue at the site when connectivity is lost
Networks
GSM (2G/4G/5G), fiber, satellite and LoRaWAN

Frequently Asked Questions

  • Does it keep working if a site loses its connection?

    Yes. Decisions such as adjusting HVAC are made at the site, so they continue when network connectivity is lost.

  • Which networks does it run over?

    GSM (2G, 4G and 5G), fiber, satellite and LoRaWAN, with failover across GSM, Ethernet and WiFi.

  • What does it connect to?

    It forwards SNMP traps, integrates with inventory systems, and bridges wired and wireless field protocols such as RS485, Modbus and M-Bus.

  • What can it control at a site?

    HVAC and generators, intelligent locks, and access to fiber-optic cabinets.

Who Delivers It

Cleo System delivers it, and is your single point of contact and accountability.

How an Engagement Starts

  1. 01

    An inquiry, not a commitment

    Telling us what you are trying to solve commits you to nothing.

  2. 02

    A conversation first

    Someone from Cleo System comes back to you directly to understand the requirement and its constraints.

  3. 03

    Terms in writing

    Any commercial terms are set out in a signed agreement between you and Cleo System.

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