Completed Engineering Materials & Manufacturing

Provoque

In plain English

AI plain-English summary

A Range Rover Evoque will serve as a testbed for a suite of technologies designed to cut fuel consumption and CO₂ emissions without sacrificing driving performance. The project tackles a practical engineering gap: how to make a popular, relatively heavy SUV significantly more efficient using off-the-shelf and near-production components, rather than waiting for a full electric powertrain. The consortium is developing low-friction engine parts, lightweight components, improved diesel combustion systems, electric boosting, active noise and vibration control, and mild hybridisation—all integrated into a single vehicle architecture. If successful, the project could accelerate the introduction of cost-effective fuel-saving technologies into mass-market vehicles. The immediate impact would be on manufacturing supply chains and engineering services in the UK, with the resulting products likely to sell well in export markets that face tightening emissions regulations. For drivers, the payoff would be a more efficient car that still feels responsive and refined—no trade-off between economy and driving experience. The project is explicitly applied, aiming to move technologies from development to production-ready status.

View original technical description
The Provoque project is a Research & Development initiative designed to accelerate the introduction of cost effective fuel economy improvement, CO2 reduction and enhanced driving experience on a Range Rover Evoque. It will use grant funding to progress a wide range of technologies to the point where they can be considered for production, supporting growth of UK manufacturing, component sales, and engineering service sales, and the likely resultant products have a strong demand in overseas markets to benefit UK exports. The technologies that will be developed as a result of the project include low friction engine concepts, lightweight engine components, diesel combustion systems, electric boosting systems, active technologies to improve vehicle refinement, vehicle electrical archtecture, and mild hybridisation. The broad range of technologies being developed, combined with the quality of the consortium members make this project excellent value for money.

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Related Research

Grants with similar aims, by meaning.

Evoque_e
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Breathe
Integrated Propulsion and Charging System for Low Carbon Vehicles
CO2 Reduction through Emission Optimisation (CREO)

Original classification

Collaborative R&D

Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.