Resilience isthe new black.

The platform where power intelligence becomes operational advantage.

GRYDION combines manufacturer-independent analytics, ML-driven resilience, and microgrid-ready optimisation into one active resilience layer with real-time control — reducing hidden losses, improving power quality, and protecting operations from grid-induced disruption.

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Commercial sites are absorbing the impact of electrification — more EV chargers, more heat pumps and more variable renewables operating on the same legacy distribution infrastructure. That infrastructure was designed for a steadier electrical world. The resulting disturbances are real, costly for customers, and often largely invisible.

The Cost of Invisible Losses

What standard site reporting misses still costs you every day.

Find the hidden losses, power-quality issues and resilience risks inside your site — measured at 1-second resolution, ranked by financial impact, and verified against physical laws before they reach your report.

Across European industry the cumulative impact runs into the billions each year, yet most sites have no structured way to see, rank or act on the disturbances driving it.

Annual cost of poor power quality to PQ-sensitive industries in Europe

Source: Leonardo Energy / European Copper Institute.

Annual cost of voltage sags to US industry

Source: EPRI.

of new EU renewables connect at distribution level — predominantly inverter-based, with limited or no rotational inertia.

Source: Eurelectric / ENTSO-E grid-connection statistics.

After conventional optimisation

You may have optimised the devices. Not the conditions they operate under.

Many sites have already improved lighting, upgraded equipment, adjusted schedules, optimised refrigeration or tuned their BMS. But even well-managed sites still operate within electrical conditions they rarely see or control: voltage movement, phase imbalance, reactive behaviour, harmonics, load interaction and infrastructure stress.

GRYDION targets this remaining layer — the electrical behaviour behind the meter that continues to affect efficiency, equipment stress and operational continuity across every operating hour.

“GRYDION does not replace conventional optimisation. It addresses the layer conventional optimisation usually cannot see.”

Why GRYDION

Built on physics. Verified by rules. Prioritised by financial impact.

Built to fit how operators actually work — site managers, energy buyers and engineering leads see the same evidence, ranked the same way, with the same physical reasoning behind every number.

Rule-verified ML

Every inference GRYDMASTER produces is checked against physical laws. No result reaches a report without passing validation.

1-second resolution

1-second data as standard, with higher-resolution and event-level capture where the measurement setup supports it. Sag events, ramp cycles, and transients are not averaged away.

Ranked, not just flagged

Every finding is ranked by severity and cost priority with stated assumptions. You get a structured list of issues — not a list of codes.

Grid-origin classification

Disturbances are classified as upstream grid events or internal site causes — so you know what you can fix and what you can only mitigate.

NILC™ — non-intrusive load clustering

Quantifies savings and attributes load behaviour without device-level submetering. Trained on real industrial telemetry, validated against measured outcomes.

How GRYDION Works

From raw signal to ranked decisions — in five verified stages.

Every report follows the same pipeline. Each stage is independently checked, and nothing reaches your dashboard without passing the previous one.

01

Ingest

Raw telemetry ingested from meters, SCADA and sensors — any supported format, mapped automatically to the canonical schema.

02

Normalise

Units, time bases and phase conventions reconciled. One representation, one timezone, one set of definitions.

03

Analyse

ML pipelines extract efficiency, power quality, harmonic and event signals from the normalised stream.

04

Validate

Physical rule engine cross-checks every inference. Pass or flag — nothing reaches the report unverified.

05

Site-wide ranking

Findings re-evaluated at the site level — ranked by severity and cost priority, not by feed or by meter.

On-site microgrid

Every site is a grid-connected microgrid.

Every site behind the meter is already a small electrical system in its own right. PV, batteries, EV charging and flexible loads accelerate the complexity — but the underlying physics, and the case for site-side intelligence, is there with or without them.

PV, storage and EV chargers seen as one system

GRYDION resolves how generation, storage and flexible loads interact behind your meter — so the optimisation reflects the whole site, not a single asset.

Process-aware dispatch

NILC™ clusters group loads by their actual operating behaviour, so dispatch and curtailment respect the production schedule instead of fighting it.

Grid-edge resilience

Voltage trim, reactive compensation and phase balancing happen at the point where they protect your equipment — not upstream where the utility decides.

Manufacturer-independent

We work with the inverters, meters and switchgear you already have. No hardware lock-in, no rip-and-replace before you see the value.

Products

Three entry points.

View all products

One backend, three ways in. Start with an 8-day baseline, deepen to a 14-day advanced PQ audit, or move straight to active on-site optimisation. Each product is a complete entry point — pick the one that matches your evidence and decision horizon.

Power Quality & Resilience Check

Pro

8-day electrical baseline for identifying inefficiencies, imbalance and avoidable operating losses. 15 findings ranked by severity and cost priority — a clear basis for what to fix first.

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Power Quality & Resilience Check

Deep Dive

14-day advanced power-quality audit using IEC 61000-4-30-aligned data, with Class A or Class S evidence depending on the measurement setup. Up to 24 ranked diagnostic outputs covering THD, harmonics (h2–h31), flicker, sag/swell events and waveform evidence.

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Active Resilience

GRYDGUARD

The active hardware layer for sites where power quality, voltage behaviour or continuity risk require physical correction. Start with a GRYDMASTER assessment where the efficiency case should be quantified first — or move directly to GRYDGUARD scoping where resilience is already the priority. Scoped per site based on measured operating conditions and installation route.

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