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Designing and Developing a High-Fidelity Digital Twin Platform for Artic

Conception et développement d'une plateforme jumeaux numériques haute -fidélité pour l'Artik

Description

The NRC-AST is designing and developing an autonomous test platform. The goal is to produce a platform which can be used in research activities related to ongoing NRC projects, will enable NRC to create a high fidelity digital twin of the platform, and can operate reliably in Arctic conditions. Key features of the test platform are a drive-by-wire (DBW) system to handle core control functions which maintains front seating area free of equipment, track kits that can be installed in place of the wheels, environmental perception suite with LIDAR and dual cameras, and an onboard compute suite to manage data processing, integration with other vehicle sensors and autonomy stack integration. Technical specifications of the test platform must be provided to NRC by the successful bidder, including: * CAD model of the vehicle and individual components (in “.fbx” file format) * Mass, inertia, center of gravity of the overall platform and main components * Geometric coordinates of all parts and joints * Weight and dimensions of wheels, tires, and track kits * Drivetrain gear ratios and shaft properties (weight and dimensions) * Engine torque-speed table * Brake torque model * Transfer case and differential ratios and shaft properties * Suspension parameters (dimensions, stiffness and damping) * Stabilizer bar properties *Deliverable must also include detailed documentation relating to: * System architecture and wiring * DBW control protocols * Sensor and compute suite setup * Installation and operation guide

Quick Summary

The National Research Council of Canada (NRC) is seeking to design and develop a high-fidelity digital twin platform for Arctic conditions. This autonomous test platform will support research activities and feature advanced systems such as drive-by-wire controls, track kits, environmental perception sensors, and onboard data processing capabilities.

Ideal For

Companies specializing in autonomous vehicle development, digital twin modeling, and ruggedized Arctic technology should consider bidding.

Digital Twin TechnologyAutonomous VehiclesArctic Research EquipmentDrive-by-Wire SystemsSensor IntegrationCAD Design
High complexity

Tender Details

Reference Number
cb-2-41503095
Solicitation Number
25-58190
Publication Date
Jan 9, 2026
Closing Date
Jan 26, 2026
Expected Start
Feb 2, 2026
Expected End
Jul 31, 2026
Procurement Method
Advance contract award notice
Selection Criteria
Not applicable
Notice Type
Advance Contract Award Notice

Classification

UNSPSC Code
41100000
UNSPSC Description
Laboratory and scientific equipment

Trade Agreements

Canada-Korea Free Trade Agreement (CKFTA); Canada-European Union Comprehensive Economic and Trade Agreement (CETA); Comprehensive and Progressive Agreement for Trans-Pacific Partnership (CPTPP); Canada-Panama Free Trade Agreement; Canada-Colombia Free Trade Agreement; Canada-UK Trade Continuity Agreement (Canada-UK TCA); Canadian Free Trade Agreement (CFTA); Canada-Peru Free Trade Agreement (CPFTA); Canada-Honduras Free Trade Agreement; World Trade Organization Agreement on Government Procurement (WTO GPA); Canada-Chile Free Trade Agreement (CCFTA); Canada-Ukraine Free Trade Agreement (CUFTA)

Contracting Entity

National Research Council of Canada (NRC)

1200 Montreal Road

Ottawa, ON

Contact

Carol Cooper

carol.cooper@nrc-cnrc.gc.ca

902293-8053

Regions of Delivery

Canada