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February 2, 2026Organised Sound0 citationsOpen Access

A spherical microphone prototype for multichannel recording: Technological design, artistic applications and compositional implications

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ARAdam RosińskiUniversity of Warmia and Mazury in Olsztyn

Key Points

  • To introduce a new spherical microphone design that enhances multichannel recording and artistic applications.
  • Developed a spherical microphone with ten motorised condenser capsules.
  • Enabled real-time adjustment of orientation and polar patterns for dynamic control.
  • Compared the prototype's capabilities against existing ambisonic microphones in varied use-case scenarios.
  • Demonstrated enhanced responsiveness compared to software-based spatialisation.
  • Showcased superior technical precision and artistic expressiveness during live performances.
  • Highlighted potential for collaborative testing with practitioners for future development.

Abstract

Abstract Recent developments in spatial audio and immersive technologies have expanded creative possibilities for composers and sound artists. This article presents a novel prototype of a spherical microphone with an ellipsoid casing and ten motorised condenser capsules, each capable of real-time adjustment of orientation and polar pattern. Unlike fixed-pattern or conventional ambisonic arrays, this design enables dynamic control over spatial coverage and directivity, offering new opportunities for multichannel recording, live performance and interactive sound art. While software-based spatialisation offers some flexibility, physical reconfiguration of capsules provides superior responsiveness and avoids latency, phase artefacts or resolution loss. This is especially critical in performance contexts where immediate acoustic adaptation is required. The system allows direct manipulation of capsule parameters during rehearsal or installation, effectively transforming the microphone into a performative instrument. The article compares the prototype with existing commercial ambisonic microphones, highlighting its distinctive advantages in workflow and compositional strategy. Use-case scenarios demonstrate how real-time control over spatial parameters enhances both technical precision and artistic expressiveness. The article concludes with a discussion of future directions, including collaborative testing with practitioners and integration into creative environments where spatial transparency, fidelity and interactivity are essential.

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Cite This Study

Adam Rosiński (2026) studied this question.

synapsesocial.com/papers/6980fd60c1c9540dea80f0e5https://doi.org/10.1017/s1355771825101039
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