BBC Collaboration

3D environment design for the BBC's Radio 1 New Music Portal
Client

BBC

Category

3D Environment: Art, Design, Technical Development & Optimization

Project

Project

Beam Immersive is working with the BBC to create the Radio 1 'New Music Portal,' a venue designed to meet the BBC’s strict branding guidelines and creative direction, serving as an innovative platform for music experiences. The Portal is also live on BBC Radio 1 during events, introducing a unique virtual dimension to traditional radio broadcasts by using Condense Reality's volumetric capture technology to 'Beam' artists into the venue in real-time.

Beam Immersive is working with the BBC to create the Radio 1 'New Music Portal,' a venue designed to meet the BBC’s strict branding guidelines and creative direction, serving as an innovative platform for music experiences. The Portal is also live on BBC Radio 1 during events, introducing a unique virtual dimension to traditional radio broadcasts by using Condense Reality's volumetric capture technology to 'Beam' artists into the venue in real-time.

Adaptable for Artists and Events

Adaptable for Artists and Events

The Portal’s dynamic design adapts to different artists and events, offering bespoke setups for each unique experience. This flexibility ensures continued engagement and relevance.

The Portal’s dynamic design adapts to different artists and events, offering bespoke setups for each unique experience. This flexibility ensures continued engagement and relevance.

Collaborative Design and Optimization

Collaborative Design and Optimization

We are partnering closely with the BBC to design a visually engaging, ultra-optimized 3D environment built in Unity for Windows, Android, and iOS builds, with additional optimization to ensure compatibility with Three.js for accessibility on mobile devices and web. The iterative process included concepting, prototyping, and refining to align with their vision.

We are partnering closely with the BBC to design a visually engaging, ultra-optimized 3D environment built in Unity for Windows, Android, and iOS builds, with additional optimization to ensure compatibility with Three.js for accessibility on mobile devices and web. The iterative process included concepting, prototyping, and refining to align with their vision.

Result

Result

The BBC Radio 1 New Music Portal is currently in its R&D phase, with significant progress being made toward creating an engaging and adaptable platform. Early iterations demonstrate its potential to support various artists and events while maintaining high performance across devices. This ongoing project highlights our focus on continuous innovation and close collaboration, aiming to deliver a scalable platform that evolves to meet diverse creative and technical needs.

See the New Music Portal in action at - https://bbc.co.uk/jack

The BBC Radio 1 New Music Portal is currently in its R&D phase, with significant progress being made toward creating an engaging and adaptable platform. Early iterations demonstrate its potential to support various artists and events while maintaining high performance across devices. This ongoing project highlights our focus on continuous innovation and close collaboration, aiming to deliver a scalable platform that evolves to meet diverse creative and technical needs.

See the New Music Portal in action at - https://bbc.co.uk/jack

  • Johnnie

    Walker

  • Johnnie

    Walker

  • Johnnie

    Walker

  • Johnnie

    Walker

  • Johnnie

    Walker

  • Johnnie

    Walker

Say Hello

contact@beamimmersive.co.uk

© 2024 Beam Immersive. All rights reserved.

Say Hello

contact@beamimmersive.co.uk

© 2024 Beam Immersive. All rights reserved.

Say Hello

contact@beamimmersive.co.uk

© 2024 Beam Immersive. All rights reserved.

Beam Immersive specializes in creating highly detailed 3D environments for digital spaces. For the BBC, we designed an immersive virtual environment for their Radio 1 ‘New Music Portal,’ enhancing user interaction through cutting-edge digital design and mobile optimization.