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Pre-Automation for Nuclear Projects

Reduce Risk Before Design and Build

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ATS Employees working on nuclear reactor automation and tooling equipment
Pre-automation for nuclear tooling

Nuclear projects often face pressure long before construction begins. Decisions made early can shape cost, schedule, and acceptance outcomes months or years later. When key assumptions remain untested, teams may encounter rework, delays, or gaps in validation evidence. 

Pre-automation brings process definition, technical risk assessment, and validation planning into the earliest project stages. This approach helps teams make more informed decisions before design and build begin, where changes are easier to manage and less likely to disrupt delivery. 

This approach supports a wide range of nuclear applications, including refurbishment, operations and maintenance, small modular reactor programs, and decommissioning projects. In each case, tooling and automation systems must perform reliably under strict operating and regulatory expectations. 

The Challenges We Address with Pre-Automation 

Understanding the factors that can slow progress or introduce risk.

Late Design Changes that Disrupt Schedules

Late-stage changes often lead to rework during design, integration, or site acceptance. Pre-automation shifts key decisions earlier, which helps reduce schedule pressure during later phases.

Unproven or Unclear Process Steps

When process steps are not fully defined, automation design may rely on assumptions. Pre-automation clarifies how each step works and identifies areas that require validation.

Risk Hidden Inside Complex Systems

Tooling and automation systems often include multiple interfaces, controls, and site constraints. Pre-automation helps identify technical risks earlier, so teams can plan mitigation strategies before procurement decisions are finalized.

Misalignment Across Stakeholders and Disciplines

Nuclear projects involve coordination across engineering disciplines and stakeholders. Pre-automation creates shared definitions, requirements, and test expectations to support clearer communication and smoother handoffs.

Validation and Documentation Needs Defined too Late

When validation planning is deferred, testing and documentation can become compressed into the final stages. Pre-automation integrates these requirements earlier, helping ensure that evidence and documentation align throughout the project.

Our Approach

Practical pre-automation services that help teams define, test, and align before the build phases begin.

Design for Manufacturability Simulation Technical Risk Assessments Proof of Principle Studies Validation Planning

Design for Manufacturability

Reduce Rework by Aligning Design with Fabrication and Inspection Requirements

Design reviews help identify details that could affect manufacturability, tolerances, or inspection effort. Recommendations focus on improving repeatability and creating clearer verification paths for nuclear tooling and automation components.

ATS employee utilizing digitalization technology to design nuclear tooling

Concept Development and Simulation  

Evaluate Concepts with Early Performance Insights

Simulation models material flows, layouts, and station interactions in a virtual environment. This allows teams to identify bottlenecks and coordination issues earlier, before design decisions are finalized.

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ATS employee utilizing digitalization technology to design nuclear tooling

Technical Risk Assessments

Identify and Track System-Level Risks Early

Structured assessments document risks, define mitigation actions, and keep risk visible throughout the project lifecycle. This supports more informed planning during proposal development and delivery. 

ATS team members working on nuclear automation equipment and evaluating technical risk

Proof of Principle Studies

Test High-Risk Process Steps Under Controlled Conditions

These studies evaluate whether key steps perform as expected under controlled conditions. The results help inform design  direction, subsequent testing approaches, and requirements documentation.

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Underwater nuclear decommissioning proof of principle study showing a large saw in a water testing simulation.

Validation Planning

Define How Requirements Will Be Verified From the Start

Validation planning outlines how functional, performance, and safety requirements will be tested and documented. This helps maintain traceability and reduces late-stage schedule pressure tied to incomplete evidence.

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ATS team in boardroom reviewing validation plan.

Key Benefits

The advantages of partnering with us.

Earlier Risk Visibility

Identify technical risks and missing inputs sooner, which helps reduce rework during integration and site activities. 

Clearer Technical Direction Before Capital Decisions

Simulation, manufacturability reviews, and proof of principle results provide stronger inputs before procurement and build decisions.

Improved Schedule Control

Early definition and identification of requirements, risk, and validation plans helps reduce compression of testing and documentation activities later in the project. 

Better Alignment Across Disciplines

Shared inputs across design, controls, testing, and safety reduce interpretation gaps and support more consistent handoffs. 

Stronger Acceptance Readiness

Early validation planning helps teams prepare for factory and site acceptance testing with clearer expectations for verification and documentation.

Applications

Pre-automation supports nuclear programs across multiple lifecycle stages. Early clarification of requirements and risk helps reduce late changes across tooling, controls, and site integration.

CANDU automaton tooling

Refurbishment and Life-Extension Outage Tooling

Reduce late design changes by defining requirements, reviewing manufacturing constraints, and validating high-risk steps before  execution plans are finalized. This approach supports stronger execution readiness for complex refurbishment projects.

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ATS employee working on nuclear tooling

Operations and Maintenance System Upgrades

Plan upgrades that align with existing systems and site constraints. Early risk assessment and validation planning help reduce integration challenges and support smoother acceptance phases.

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MultiFlex Nuclear Decommissioning Saw

Decommissioning, Segmentation, and Waste Handling Workflows

Reduce schedule risk by validating tooling concepts, process steps, and documentation expectations early, before build decisions lock. Pre-automation supports early risk identification for complex remote tooling workflows.

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Nuclear Fuel Rods

Fuel Fabrication, Assembly, and Test Systems

Support early alignment of automation and inspection requirements. Proof-of-principle work helps confirm process steps and define validation expectations before design progresses.

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