LiveBetter joins the #SmartEnergyCluster

SmartEnergyCluster logo

The LiveBetter project is pleased to announce that it has joined the #SmartEnergyCluster, a collaborative initiative bringing together 39 innovative projects committed to accelerating the smart energy transition.

To make the smart energy transition a reality, the 39 projects have come together to mutually support one another in developing, conceptualising and deploying new business models and concepts that fully capture the economic value and the wider benefits of integrated services. These projects combine different energy services — such as energy efficiency, distributed generation and flexibility — and in some cases integrate energy services with non-energy benefits.

A shared ambition unites the cluster members: to overcome the fragmentation of markets and segments, and to enhance cooperation and trust among different service providers and market actors, including across segments that have not traditionally shared common business cases. By fostering collaboration and knowledge exchange, the Smart Energy Cluster aims to create stronger, more scalable solutions that benefit both the energy system and end-users.

Within the framework of dissemination, communication and exploitation of project activities and results, the cluster will work collectively to engage common target groups and maximise impact. These joint actions are designed to multiply the benefits generated by each individual project, including the integration of new and smart service offers, reduced energy costs for end-users, and improved payback periods for investments in sustainable energy solutions.

For LiveBetter, joining the Smart Energy Cluster represents a significant opportunity to create synergies with fellow projects, exchange expertise, and contribute to shaping innovative and integrated energy services. By collaborating closely with other forward-looking initiatives, LiveBetter aims to strengthen its impact and help drive a more efficient, sustainable and consumer-centred energy transition.