OEE-Data Campus concept visual showing a central nearshore compute campus with OEE Clusters at the edge
SWITCH 2026 · Singapore

A distributed, modular nearshore data-campus concept: compute at the core, OEE Clusters at the edge, and validation before scale.

Why OEE-DCC

Digital infrastructure designed with its marine utility edge.

OEE-DCC is the lead story: a distributed nearshore campus architecture that places high-density compute at the centre and modular OEE-Cluster infrastructure around it.

01

Modular by design

A campus can be configured and validated in bounded modules before any scale-up decision.

02

Nearshore context

The concept is intended for coastal or protected-water settings where access, resilience, cooling and utility integration can be evaluated together.

03

Compute at the core

The central campus remains the digital load and operational focus; edge infrastructure is designed around its measured needs.

04

Clusters at the edge

OEE Clusters form the offshore marine-energy and Power-to-Carrier infrastructure backbone, subject to staged engineering proof.

How the Petal Campus Works

One core. Five petals. Twenty harvesting modules.

The reference configuration uses five petals around a central compute core. Each petal is conceived with four Hyper Shuttle harvesting modules—twenty modules across the campus concept.

OEE-Cluster Energy Backbone

The marine-energy and P2C infrastructure layer.

OEE-Cluster is conceived as the offshore backbone at each petal—hosting marine-energy conversion and the infrastructure needed to condition, route and use output around the campus.

Power-to-Carrier pathways are conditional design options, not present operating claims. Their role depends on measured energy availability, site conditions, safety, offtake and economics.

Scope clarity: OEE-Dome is a separate water-focused community or island platform. It is not the data-campus architecture and is intentionally not combined with the OEE-DCC proposition.

Target 1–2 MW Modular Campus Strategy

A planning target, not a claim of achieved output.

The 1–2 MW-class campus is a design target for a five-petal / twenty-module configuration. Reaching that range would require approximately 50–100 kW of net average electrical output per module.

5petals in the reference campus
20Hyper Shuttle modules total
50–100 kWrequired net average electrical target per module
1–2 MWcampus-class design target
These figures are preliminary TPG planning assumptions. They do not establish that twenty modules currently produce 1–2 MW. Net output, parasitic loads, availability, storage, conditioning, redundancy and campus demand must be modelled, tested and independently validated.

Validation Pathway

Evidence before scale.

TPG is seeking partners to turn the concept into a measured engineering programme with explicit gates.

01 / MODEL

System model

Define site conditions, resource inputs, loads, interfaces, losses and an auditable energy balance.

02 / TEST

Subsystem testing

Characterize Hyper Shuttle mechanics, conversion efficiency, controls, durability and parasitic demand.

03 / PILOT

Marine pilot

Test a bounded OEE-Cluster configuration under representative nearshore conditions and duty cycles.

04 / VERIFY

Independent validation

Use third-party measurement to determine credible net output, reliability, economics and scale-up readiness.

Partners Sought

Build the evidence base with us.

Data-centre operators

Load profiles, resilience requirements, thermal strategy and deployment criteria.

Marine engineering

Naval architecture, mooring, survivability, maintainability and nearshore operations.

Energy conversion

PTO, generation, power electronics, storage, controls and grid interfaces.

Research & test facilities

Numerical modelling, tank testing, instrumentation and independent measurement.

Infrastructure developers

Site integration, permitting, logistics, utility interfaces and phased deployment.

Strategic capital

Validation-led financing aligned to technical gates rather than unverified projections.

Claim discipline. All power, output, economics and performance figures on this page are design targets subject to modelling, testing and independent validation. Prospective collaborators are partners sought—not confirmed programme members.

TPG Cleantech · SWITCH 2026 Singapore

Explore the OEE-DCC validation programme.

If your organisation can help test, integrate, host, measure or finance a bounded pilot, we would welcome a focused technical conversation.