Live grid operations

Intelligent power
for the digital age

Grid Interfaces Solution delivers programmable power infrastructure from grid ingestion to last-mile compute. Real-time signal orchestration, adaptive load balancing, and resilience built into every node including the megawatt scale power swings that synchronous GPU training now throws at the feed.

CPU load
68%
Throughput
2.4 Tb/s
Inlet temp
21°C
Req / sec
847K

Every GPU cluster
needs a controlled governor

Bulk synchronous training alternates a compute heavy phase near GPU TDP with an idle adjacent all reduce or checkpoint phase, every few seconds, across every GPU in the job at once. At scale that shows up as a single megawatt waveform hammering the facility feed concentrated in the 0.2–3 Hz band where transmission lines, inter plant coupling, and turbine generator shaft torsionals all have resonant modes. GridIS retasks the power converters already inside your UPS to cancel it with no additional hardware.

Facility feed, 200s training window normalized power
1.0 0.5 0 ■ raw GPU draw · ±41% swing ■ GridIS-compensated · ±6%
Spectral energy, 0–5 Hz
critical band
unmitigated  ·  compensated
~90% reduction in spectral energy inside the 0.2–3 Hz resonance band.

Active harmonic compensation

The UPS inverter stage is driven as an active filter, cancelling the non linear harmonics drawn by rectifier front end GPU power supplies in real time.

Grid on burst buffering

While the grid is live, the same converters shuttle energy against the compute/communication cycle - charging on the idle phase, discharging on the compute phase using the UPS's bess storage. No added hardware.

Ramp & range enforcement

Ramp up, ramp down, and dynamic power range are held against the utility's time domain spec in firmware, so the facility feed never exceeds the interconnection agreement.

The backbone of
intelligent power

The electrical infrastructure powering the digital economy hasn't fundamentally changed in over a century.

Edge power control

Precision power flow management deployed at the network edge. Real-time voltage regulation and bidirectional control without the trade offs of conventional passive hardware.

Distributed grid intelligence

Each node in your network becomes a programmable control point. Our orchestration layer ties them into a unified system and enables lightning fast power flow management at scale.

Data center integration

All in one power conditioning from the grid connection point. Protect sensitive loads, eliminate downtime risk, and unlock a clear path toward grid independence for your facility.

Built for the
hardest problems

From hyperscale data centers to renewable integration. GridIS infrastructure handles the workloads that existing power hardware can't.

Data centers

Protect uptime at every watt

Power conditioning from the grid connection point down. Keep UPS systems in eco mode, absorb GPU burst mode swings before they reach the feed, and reduce total cost of ownership.

Renewables and storage

Maximize every megawatt-hour

Minimize curtailment, reduce plant trips, and integrate storage assets cleanly. GridIS replaces a stack of add on hardware with a single intelligent control point.

Grid operators

Turn passive networks active

Precise phase balanced voltage control from the substation. Increase network capacity, improve reliability, and gain the observability modern grid management demands.

Advancing the science
of intelligent power

Our R&D programme sits at the intersection of power electronics, signal theory, and data center engineering, pushing the limits of what grid connected infrastructure can do.

Design and simulation analysis

High fidelity modelling of power electronics topologies, control algorithms, and grid interaction scenarios validated through hardware in the loop simulation before physical deployment.

  • 1. Electromagnetic transient (EMT) modelling of converter-interfaced systems
  • 2. MATLAB / Simulink and PSCAD co-simulation frameworks for control validation
  • 3. Sensitivity analysis across operating conditions, fault modes, and load profiles

Power quality issues mitigation

Systematic identification, characterisation, and active suppression of power quality disturbances — harmonics, voltage sags, flicker, and unbalance — in modern grid environments.

  • 1. Active filtering and harmonic cancellation in high-density computing environments
  • 2. Dynamic voltage restorer topologies for critical load protection
  • 3. Real-time PQ event detection and adaptive compensation control strategies

Universal power quality controller — AI training loads

Design of a single, unified controller capable of addressing all power quality phenomena simultaneously — including the megawatt-scale swings of GPU burst-mode training — reducing hardware complexity and improving reliability across data center power chains.

  • 1. Multi-function converter architectures combining UPS, APF, and voltage regulation
  • 2. Sub-100ms telemetry and FFT decomposition to isolate GPU compute/comms power swings from steady-state harmonics
  • 3. Standards compliance across IEC 61000 series and EN 50160 for grid-connected facilities

Expert guidance,
applied to your project

GridIS offers independent technical consultancy across all three research areas — from early-stage feasibility to detailed design review and verification.

Design and simulation

Simulation and design review

We work alongside your engineering team to build, validate, and critically review simulation models — identifying control instabilities, resonance risks, and sub-optimal designs before hardware commitment.

  • 1. Independent review of existing simulation models and control architectures
  • 2. Bespoke model development in MATLAB / Simulink, PSCAD, or PLECS
  • 3. Reporting and recommendations suitable for investor, regulatory, or tender submissions

Power quality

Power quality assessment and mitigation

Site-specific PQ surveys and disturbance root-cause analysis — followed by a costed mitigation roadmap aligned to your operational constraints and compliance obligations.

  • 1. PQ measurement campaigns and data interpretation to EN 50160 / IEC 61000
  • 2. Mitigation technology selection — active filters, SVCs, DVRs, and hybrid solutions
  • 3. Ongoing monitoring frameworks and KPI dashboards for continuous PQ visibility

Data center power

GPU power stabilization — feasibility and specification

For operators running AI training clusters, we provide detailed feasibility studies and functional specifications for converter-native UPS control that absorbs GPU burst-mode swings without added hardware.

  • 1. Load profiling and disturbance characterisation for the target facility
  • 2. Functional specification and performance benchmarking against conventional alternatives
  • 3. Integration roadmap covering protection coordination, SCADA, and reliability targets

Ready to upgrade
your infrastructure?

Tell us about your grid challenge. Our team works directly with operators, developers, and utilities to scope the right solution.

Email us Schedule a call

Or reach us directly at info@gridis.co.uk