Grid-scale renewable infrastructure

We engineer the infrastructure behind the energy transition.

Vectrus Energy develops, builds and operates utility-scale generation, storage and transmission assets for utilities and offtakers. 4.2 GW delivered, 1.8 GW in construction, and a fleet availability record our partners build their forecasts on.

Utility-scale solar Onshore wind Battery storage HVDC transmission
4.2 GWOperating
2.4 GWhStorage
99.2%Availability
6Markets
01Generate

Sun and wind, captured at grid scale.

We site, design and build utility-scale photovoltaic and onshore wind assets — 4.2 GW operating, 1.8 GW in construction. Every layout is optimised against measured irradiance, wake loss and grid-connection cost, not against a template.

4.2 GW operating Six markets Tier-1 modules
02Store & Move

Storage that turns weather into dispatch.

2.4 GWh of battery capacity and ±320 kV HVDC corridors carry power from where it is generated to where it is needed — firm, fast, and in milliseconds. Our sites are bid into balancing markets as dispatchable capacity, not as a forecast.

2.4 GWh storage ±320 kV HVDC 12 ms response
03Deliver

Firm power for cities that never idle.

We run the asset for its whole life: a 24/7 network operations centre, predictive maintenance across 1,240 turbines and 99.2% average fleet availability. Where a site underperforms, it is measured, published and fixed.

99.2% availability 24/7 NOC 25-year PPAs

The platform

Four asset classes.
One operating standard.

Vectrus builds and holds generation, storage and transmission together, because a grid does not care who owns which part of it. One engineering standard, one control layer, one set of guarantees.

01 Rows of blue photovoltaic panels stretching to the horizon under a clear sky

Utility-scale solar

Single-axis tracking PV from 60 MW to 1.1 GW, engineered against measured irradiance and interconnection limits rather than a nominal capacity target.

2.6 GWOperating
02 Onshore wind turbines standing across an open green field in daylight

Onshore wind

1,240 turbines under management, sited on measured hub-height resource and maintained by our own field teams under a single 25-year service model.

1.6 GWOperating
03 Close view of a battery storage cell against a concrete wall

Battery storage

Grid-scale BESS co-located with our generation and stand-alone on constrained networks, dispatched as firm capacity with a 12 ms response envelope.

2.4 GWhContracted
04 High-voltage transmission tower and conductors against the sky

Transmission & grid

HVDC corridors, substations and reactive compensation that move bulk power between regions — designed for a 40-year service life in salt and desert air.

820 kmIn service

Performance

The numbers our offtakers
underwrite against.

Published quarterly, audited annually, and identical in format across every market we operate in. Independent engineers verify availability and net generation at the meter.

0GW Operating capacity

Solar and onshore wind assets in commercial operation across six markets.

0GWh Storage contracted

BESS capacity either operating or under construction, co-located and stand-alone.

0% Fleet availability

Twelve-month rolling average across 1,240 turbines and 3.4 million modules.

0units Turbines monitored

Every drivetrain sampled continuously by our own predictive maintenance stack.

Selected assets

AssetMarketCapacityStatus
Cordillera SolarAtacama, Chile · single-axis tracking Chile 680 MW Operating
Tamworth WindNew South Wales, Australia · 148 turbines Australia 420 MW Operating
Rio Grande NorteBahia, Brazil · hybrid PV + BESS Brazil 540 MW Operating
Al Dhafra BESSAbu Dhabi, UAE · stand-alone storage UAE 900 MWh In build
Aegean InterconnectorAegean Sea, Greece · HVDC link Greece 1.2 GW In build
Hokkaido Phase IIHokkaido, Japan · onshore wind Japan 260 MW Development

How we work

From empty land to
a 40-year asset.

Step 01

Survey & secure

Twelve to eighteen months of resource measurement, land assembly, environmental work and grid studies — completed before a single module is ordered.

Step 02

Engineer & finance

Bankable design, competitive EPC tender, and a capital structure agreed with our lenders and equity partners on the asset's real operating profile.

Step 03

Build

Self-performed civil works and foundations, Tier-1 equipment throughout, and the same construction standard applied in every market we enter.

Step 04

Operate for life

24/7 network operations, predictive maintenance and repowering studies — we hold the asset for its whole operating life, not until the commissioning certificate.

Technology

A control layer we
build ourselves.

Vendor platforms stop at their own equipment. Ours spans generation, storage and transmission in one telemetry model, so a disturbance on the network is visible to the people who can act on it in the same second it happens.

  • Grid-forming invertersPlants that hold frequency and voltage through a network disturbance instead of tripping offline at the first sign of one.
  • One SCADA model48,000 points sampled every two seconds across solar, wind, storage and HVDC — one historian, one alarm list, one truth.
  • Predictive maintenanceVibration and thermal monitoring on every drivetrain, with failures flagged weeks before they become lost generation.
  • Curtailment optimisationForecast-driven bidding that recovers energy the network would otherwise instruct us to spill.
Photovoltaic modules mounted on a tracking structure in daylight
99.98%SCADA uptime, 12 months
Vectrus grid topology Solar Wind Storage Substation City GENERATION DISPATCH DELIVERY
48,000 telemetry points 2 s sample rate 1 historian

Next step

Talk to the team that will still be operating it in 2049.

We will walk you through the pipeline, the operating record and what a partnership looks like — including where your market sits in our development queue and what we would need from the grid to move it forward.

Direct lines

Operations (24/7)
+852 3000 0000
Registered office
Level 24, 88 Hoi Bun Road, Kwun Tong, Hong Kong
Response time
Within one business day