Solutions · Telecom

Stop losing money at sites you cannot see

NeoTAQ gives TowerCos and MNOs telecom tower data logging and BTS energy monitoring across on-grid, bad-grid and off-grid sites — DG run-hours, fuel pilferage and fuel theft detection, diesel avoidance and NOC visibility on one platform across Asia, the GCC and Africa.

OEM-agnosticevery rectifier, battery and genset brand, on one platform

Measure

NeoTAQ provides telecom tower energy monitoring for distributed genset and battery sites — tracking fuel, DG overruns, battery health and site uptime. Single window visibility for energy mix optimisation, smart battery charging, peak-hour energy saving and telecom O&M cost reduction across tower fleets.

Your network is growing. Your visibility is not.

  • Thousands of BTS sites, almost no visibility

    Fuel is being burned, batteries are degrading and gensets are running longer than they need to, and you find out after the damage is done.

  • Multi-vendor equipment, fragmented monitoring

    Every OEM has its own system. Getting a network-wide picture means logging into five tools and stitching the answer together manually.

  • Energy is your biggest OPEX and it keeps rising

    Grid instability, diesel price volatility and battery replacement cycles consume the budget. Without granular site-level data, there is no way to know where to cut.

Manage

How NeoTAQ runs your tower fleet

Telecom site genset monitoring

Runtime, fuel level and consumption per site. Fuel becomes a number, not a guess.

  • Tower battery monitoring system

    Battery state and health across the fleet, so a failing string is caught before the site drops.

  • Telecom power management

    Mains, genset and battery availability in one view. Know which sites are at risk right now.

  • Remote diagnostics

    Triage a fault from the NOC and dispatch a crew only when a visit is truly needed.

One platform, whatever powers your towers

Pick your site type. NeoTAQ monitors fuel, batteries and power health on each, across multi-vendor equipment.

  1. Grid
  2. Rectifier
  3. Battery
  4. Bus Common bus
  5. BTS

On-grid sites: visibility into the power you think is stable

Grid is on but rectifiers age silently, batteries float at wrong voltage, and no one knows the true power quality until the site drops.

  • AC mains quality monitoring

    Voltage, frequency and phase balance logged continuously per site.
  • Rectifier module health

    Output current, load share across modules and temperature per string.
  • Battery float voltage and SOC

    Continuous visibility into whether the battery is actually charged and healthy.
  • Grid outage logging

    Every outage timestamped with duration so you have the data to act on.
  1. Grid
  2. Generator
  3. ATS
  4. Rectifier
  5. Battery
  6. Bus Common bus
  7. BTS

Bad-grid sites: cut the diesel that grid instability forces

Grid exists but fails constantly. Every outage forces a DG start. Batteries cycle hard. Fuel cost is high and unpredictable.

  • Grid availability per site per day

    Hours on grid versus hours on generator, the number that drives your energy OPEX.
  • DG run-hours and fuel consumption

    Actual litres consumed per kWh against rated engine consumption.
  • Battery SOC, SOH and DoD per cycle

    Depth of each discharge cycle and whether degradation is accelerating.
  • ATS switching events

    Every transfer logged, abnormal switching patterns flagged automatically.
  1. Solar
  2. Generator
  3. Battery
  4. Bus Common bus
  5. BTS

Off-grid sites: solar and battery first, DG only when you need it

The site runs on diesel and batteries. Solar is installed but without proper dispatch control, the DG still runs more than it should and fuel is going missing.

  • Solar generation versus irradiance

    Real output compared to expected, so soiling and panel faults are visible.
  • Battery SOC, SOH, cycle count and remaining backup time

    The full picture on battery health, not just a voltage reading.
  • DG start and stop intelligence

    Generator starts only when battery SOC hits the low threshold, not on a fixed timer.
  • Fuel delivery versus consumption reconciliation

    Litres delivered versus litres burned; the gap is your pilferage number.
  1. Generator
  2. Rectifier
  3. Battery
  4. Bus Common bus
  5. BTS

Generator-only sites: cut fuel cost, catch theft, extend asset life

No solar, no grid. Pure diesel. Fuel is the entire OPEX. No visibility means no way to know what is burning, what is being stolen or when the next failure will happen.

  • Actual engine run-hours

    Logged from the equipment directly, not self-reported.
  • Fuel consumption versus rated burn rate

    Overconsumption is visible the day it starts, not at month-end reconciliation.
  • Anti-theft detection

    Fuel-level drops between deliveries that do not match logged runtime are flagged automatically.
  • Battery float health

    Even on primarily diesel sites, battery condition determines backup time when the DG stops.

Maximize

What the fleet gains

Lower energy OPEX per site

Granular fuel and battery data cuts the biggest controllable cost — asset sweating and TCO optimisation without capex avoidance trade-offs.

Higher network availability

Battery and power anomalies are caught before they become SLA penalties — supporting 100% network availability targets and decarbonisation goals.

Fewer truck rolls

Remote diagnostics confirm or rule out a fault before you commit a technician — warranty void prevention and genset upgrade avoidance on real data.

Request a Demo

OEM-agnosticevery rectifier, battery and genset brand, on one platform

How it works

On a distributed tower fleet

Across a fleet of genset-and-battery tower sites, NeoTAQ watches fuel level, battery health and power availability from one place, flagging a draining tank or a weak battery string before a site goes dark.

Capability shown. A named telecom reference will be added once a customer is approved for publication.

Telecom: questions buyers ask

See NeoTAQ run on sites like yours and get answers mapped to your setup.

What does NeoTAQ monitor on a BTS site?

Fuel consumption, DG run-hours, battery SOC/SOH/DoD, string voltage, float voltage, AC mains quality, rectifier health, ATS switching events and power availability, AC and DC layers at the same site.

Will it work with our existing multi-vendor equipment?

Yes. NeoTAQ is OEM-agnostic and communicates with multi-vendor rectifiers, gensets, batteries and meters over open protocols. No equipment swap needed.

How does it detect fuel theft?

It reconciles logged DG runtime and rated fuel consumption against delivery records. A gap between delivered fuel and consumed fuel that does not match runtime is flagged automatically.

What battery KPIs does it track?

SOC (state of charge), SOH (state of health), depth of discharge per cycle, string voltage, float voltage, temperature, cycle count and remaining backup time.

Does it work on off-grid and bad-grid sites?

Yes, those are exactly where it adds the most value, optimising the energy mix across solar, battery and diesel to cut OPEX where energy cost per kWh is highest.

Can it integrate with our existing NOC?

NeoTAQ pushes alarms and status data via API. Contact us to confirm the integration path for your specific NOC setup.

Which countries does NeoTAQ cover for telecom tower monitoring?

NeoTAQ covers telecom tower sites in Pakistan, UAE and Afghanistan, with the platform built to scale across MENA and Sub-Saharan Africa. It supports on-grid, bad-grid and off-grid BTS sites.

How does NeoTAQ reduce telecom tower OPEX?

By giving TowerCos and MNOs live visibility into DG run-hours, fuel consumption, battery DoD and grid availability across every BTS site. Teams catch fuel pilferage, identify sites burning excess diesel, and prioritise maintenance visits on real data — not scheduled rounds.

Can NeoTAQ detect fuel theft at telecom sites?

Yes. Continuous fuel level monitoring and DG run-hour tracking surfaces discrepancies between expected and actual consumption. Anomalies trigger alerts before losses compound.

Does NeoTAQ cover telecom towers in Africa?

Yes. NeoTAQ is built for the off-grid and bad-grid BTS conditions common across Sub-Saharan and North Africa — Nigeria, Kenya, Ghana, Egypt and beyond. The platform runs on 4G and works where fibre is unavailable.

Which GCC countries does NeoTAQ cover for telecom monitoring?

NeoTAQ covers telecom tower fleets across the UAE, KSA, Qatar, Kuwait, Oman and Bahrain — a single fleet view across all six GCC states.

Bring your tower network into one view.

A focused demo on your fleet. No generic walkthrough.

OEM-agnosticevery rectifier, battery and genset brand, on one platform