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Deep-Tech · Utility-scale Solar

Engineer breakthrough returns for solar.

// Accuracy you can trust and returns you can prove.

Built on a decade of research, Enurgen's novel 3D physics-based model unlocks higher energy yields from design through operations, with bankable precision.

Deep-Tech software defining utility-scale solar systems of tomorrow — capturing solar asset performance from cells to systems.

DUET 3D physics-based solar model visualization DUET · DUal-sided Energy Tracer
3–5%
Uncertainty removed
P50/P90
Spread narrowed
0%
IRR maximized
0
Unexplained losses eliminated
The Technology · DUET

From a single cell-string
to GW-scale.

DUET — the DUal-sided Energy Tracer — is a cell-to-system bifacial modelling engine powered by a true 3D Finite Element Method. It traces energy across every cell, module and row, scaling seamlessly from prototype to gigawatt portfolios.

  • 3D
    3D Finite Element MethodPhysics-first simulation, not statistical shortcuts.
  • Cell-to-System Bifacial ModellingFront- and rear-side gains captured at every scale.
  • Single cell-string → GW-scaleOne coherent model, end to end.
DUET 3D finite element solar cell model
One model · Whole lifecycle

Three products across the
solar asset lifecycle.

The same bankable physics, applied from the drawing board to the field — so every decision compounds value.

01 / LIFECYCLE

Design

Optimize layout, tracker geometry and bifacial gain before a single panel is installed — maximizing modelled yield and IRR from day one.

02 / LIFECYCLE

Construction

Validate as-built performance against design intent, catching deviations early and protecting the bankable yield case through delivery.

03 / LIFECYCLE

Operations

Continuously compare model to field, isolate underperformance to its true cause, and eliminate unexplained losses across the portfolio.

Capabilities

Precision modelling,
cell to system.

Every capability is grounded in physics — built to be bankable and verifiable against the field.

3D Finite Element Method Modelling

True three-dimensional simulation of light, geometry and current across the array.

Sub-Hourly Irradiance & Energy Yield

High-resolution temporal modelling that resolves the dynamics most tools average away.

Cell-to-System Modelling

One coherent model from individual cells up to gigawatt-scale systems.

Model-to-field Performance Assessment

Reconcile predicted output with operating data to prove and protect returns.

Terrain-inclusive Near Shading

Accurate near-shading that accounts for real terrain, not idealized flat ground.

Cell-Level Irradiance

Resolve irradiance down to the individual cell for unmatched fidelity.

Enurgen platform dashboard showing solar yield analytics
The Platform

See every kilowatt-hour,
and where it comes from.

Translate deep physics into decisions. Enurgen turns DUET's cell-to-system simulation into a clear, bankable picture of where your yield is won — and where it leaks.

  • Bankable P50/P90 yield with quantified uncertainty
  • Loss attribution from system down to cell level
  • Model-to-field reconciliation across the portfolio
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Trusted by large-scale solar energy providers worldwide

Scatec Eni Lightsource Potentia Kiewit
The Team

A decade of solar physics,
spun out of SUNLAB.

KP
Kibby PollakCEO
CV
Dr. Christopher ValdiviaCTO
KH
Prof. Karin HinzerPresident
HS
Prof. Henry SchriemerHead of Research

Ottawa, Canada · Spin-off of SUNLAB / University of Ottawa · Founded 2022

Backed by
$4.1M Seed
Techstars

Equinor & Techstars Energy Accelerator — 2023

2048 Ventures BDC Brightspark Diagram MaRS IAF
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Want to see the model in action?

See how DUET turns deep physics into bankable returns across your solar portfolio.