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Mark R. P. Thomas

10 accepted papers

2025

Diff-SAGe: End-to-End Spatial Audio Generation Using Diffusion Models

ICASSP 2025accepted

Spatial audio is a crucial component in creating immersive experiences. Traditional simulation-based approaches to generate spatial audio rely on expertise, have limited scalability, and assume independence between semantic and spatial information. To address these issues, we explore end-to-end spat…

Cited by 0SourceScholar
2025

Past, Present, and Future of Spatial Audio and Room Acoustics

ICASSP 2025accepted

The study of spatial audio and room acoustics aims to create immersive audio experiences by modeling the physics and psychoacoustics of how sound behaves in space. In the long history of this research area, various key technologies have been developed based both on theoretical advancements and pract…

Cited by 0SourceScholar
2021

Reducing Modal Error Propagation through Correcting Mismatched Microphone Gains Using Rapid

ICASSP 2021accepted

Microphone array calibration is required to accurately capture the information in an audio source recording. Existing calibration methods require expensive hardware and setup procedures to compute filters for correcting microphone responses. Typically, such methods struggle to extend measurement acc…

Cited by 0SourceScholar
2020

A Novel Method for Obtaining Diffuse Field Measurements for Microphone Calibration

ICASSP 2020accepted

We propose a straightforward and cost-effective method to perform diffuse soundfield measurements for calibrating the magnitude response of a microphone array. Typically, such calibration is performed in a diffuse soundfield created in reverberation chambers, an expensive and time-consuming process.…

Cited by 0SourceScholar
2019

Practical Concentric Open Sphere Cardioid Microphone Array Design for Higher Order Sound Field Capture

ICASSP 2019accepted

The problem of higher order sound field capture with spherical microphone arrays is considered. While A-format cardioid designs are commonplace for first order capture, interest remains in the increased spatial resolution delivered by higher order arrays. Spherical arrays typically use omnidirection…

Cited by 0SourceScholar
2016

Applications of 3D spherical transforms to personalization of head-related transfer functions

ICASSP 2016accepted

Head-related transfer functions (HRTFs) depend on the shape of the human head and ears, motivating HRTF personalization methods that detect and exploit morphological similarities between subjects in an HRTF database and a new user. Prior work determined similarity from sets of morphological paramete…

Cited by 10SourceScholar
2016

BFGUI: An interactive tool for the synthesis and analysis of microphone array beamformers

ICASSP 2016accepted

Microphone arrays are beneficial for distant speech capture because the signals they capture can be exploited with beamforming to suppress noise and reverberation. The theory for the design and analysis of microphone arrays is well established, however the performance of a microphone array beamforme…

Cited by 0SourceScholar
2015

Blur kernel estimation approach to blind reverberation time estimation

ICASSP 2015accepted

Reverberation time is an important parameter for characterizing acoustic environments. It is useful in many applications including acoustic scene analysis, robust automatic speech recognition and dereverberation. Given knowledge of the acoustic impulse response, reverberation time can be measured us…

Cited by 0SourceScholar
2015

Dereverberation sweet spot dilation with combined channel equalization and beamforming

ICASSP 2015accepted

Beamforming and channel equalizers can be formulated as optimal multichannel filter-and-sum operations with different objective criteria. It has been shown in previous studies that the combination of both concepts under a common framework can yield results that combine both the spatial robustness of…

Cited by 0SourceScholar
2015

Estimation of multipath propagation delays and interaural time differences from 3-D head scans

ICASSP 2015accepted

The estimation of acoustic propagation delays from a sound source to a listener's ear entrances is useful for understanding and visualising the wave propagation along the surface of the head, and necessary for individualised spatial sound rendering. The interaural time difference (ITD) is of particu…

Cited by 0SourceScholar