Platform / Vertical 01

Data centre.

A continuous critical load that cannot be shed, sized against on-site renewables and storage, and proved over a ten-year horizon before a single transformer is ordered.

What makes this load different

A data centre load is flat, large and unforgiving. There is no diversity to hide behind and no acceptable interruption, so the design question is not “how much energy” but “how much firm capacity, at what confidence, for how many hours”.

  • Continuous 24/7 critical load with negligible diversity between racks
  • Redundancy expressed as a tier, not a percentage — N+1 and 2N topologies change the sizing problem entirely
  • PUE and cooling load that move with ambient temperature, so the load series is weather-coupled too
  • Multi-year IT growth ramps, so the system must be feasible in year one and year ten
  • Grid connection capacity and export limits that constrain how much renewable generation is worth installing
  • Demand charges and network tariffs large enough to change the optimal storage duration
Single-line diagram of a grid-connected data centre power system with PV, wind, storage and critical load
Live

The twin, running right now

Live irradiance, temperature and wind for Western Sydney driving a 60 MW solar array and a 40 MW wind cluster against a 50 MW data-centre load, with a 200 MWh battery dispatched between them. This is the model a study runs over ten years, shown across three days.

Platform modules

How the engine is configured here

Resource acquisition
Five complete calendar years of hourly reanalysis data per site — GHI, plane-of-array irradiance at the array tilt, ambient temperature and 100 m wind speed — stored locally so every number traces to one series.
Design & sizing
PV, wind and storage unit selection with datasheets; IT load model with PUE and growth ramp; PV / WT / BESS capacities solved against the reliability criterion.
Digital twin
Fine-timestep dispatch of generation, load, adaptive storage control and grid exchange, with live telemetry.
Feasibility
Ten-year feasibility, cashflows, year-by-year trajectory and a scorecard across siting cases, on a referenced cost basis.
Data export
One to five years of dispatch logs at 10, 30 or 60 minute resolution, re-dispatched at the export timestep so the energy balance holds exactly at every row — ready for real-time simulation platforms.
Design basis

Standards and criteria applied

  • Data-centre infrastructure and redundancy tier classification
  • Wiring rules, switchgear and controlgear assemblies, and protection coordination for the distribution system
  • Grid connection of inverter energy systems, and PV array installation and DC-side safety
  • Battery energy storage installation, safety and fire separation
  • Standby generating-set requirements where diesel or gas backup remains in the design
  • Reliability assessment methods for industrial and commercial power systems

The applicable set is confirmed at kick-off and depends on jurisdiction, connection point and the reliability target agreed with you.

Run the platform against your site.

Send a location and a load profile — we will come back with a sized system and a ten-year trajectory.

Request a demonstration