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Archontis Politis

11 accepted papers

2026

BEYOND OMNIDIRECTIONAL: NEURAL AMBISONICS ENCODING FOR ARBITRARY MICROPHONE DIRECTIVITY PATTERNS USING CROSS-ATTENTION

ICASSP 2026oral

We present a deep neural network approach for encoding microphone array signals into Ambisonics that generalizes to arbitrary microphone array configurations with fixed microphone count but varying locations and frequency-dependent directional characteristics. Unlike previous methods that rely only…

Cited by 0SourcePDFScholar
2025

Gen-A: Generalizing Ambisonics Neural Encoding to Unseen Microphone Arrays

ICASSP 2025accepted

Using deep neural networks (DNNs) for encoding of microphone array (MA) signals to the Ambisonics spatial audio format can surpass certain limitations of established conventional methods, but existing DNN-based methods need to be trained separately for each MA. This paper proposes a DNN-based method…

Cited by 0SourceScholar
2024

Attention-Driven Multichannel Speech Enhancement in Moving Sound Source Scenarios

ICASSP 2024accepted

Current multichannel speech enhancement algorithms typically assume a stationary sound source, a common mismatch with reality that limits their performance in real-world scenarios. This paper focuses on attention-driven spatial filtering techniques designed for dynamic settings. Specifically, we stu…

Cited by 0SourceScholar
2024

Neural Ambisonics Encoding For Compact Irregular Microphone Arrays

ICASSP 2024accepted

Ambisonics encoding of microphone array signals can enable various spatial audio applications, such as virtual reality or telepresence, but it is typically designed for uniformly-spaced spherical microphone arrays. This paper proposes a method for Ambisonics encoding that uses a deep neural network…

Cited by 12SourceScholar
2024

Perceptually-Motivated Spatial Audio Codec for Higher-Order Ambisonics Compression

ICASSP 2024accepted

Scene-based spatial audio formats, such as Ambisonics, are playback system agnostic and may therefore be favoured for delivering immersive audio experiences to a wide range of (potentially unknown) devices. The number of channels required to deliver high spatial resolution Ambisonic audio, however,…

Cited by 0SourceScholar
2023

STARSS23: An Audio-Visual Dataset of Spatial Recordings of Real Scenes with Spatiotemporal Annotations of Sound Events

NeurIPS 2023poster

While direction of arrival (DOA) of sound events is generally estimated from multichannel audio data recorded in a microphone array, sound events usually derive from visually perceptible source objects, e.g., sounds of footsteps come from the feet of a walker. This paper proposes an audio-visual sou…

2019

Sharpening of Angular Spectra Based on a Directional Re-assignment Approach for Ambisonic Sound-field Visualisation

ICASSP 2019accepted

A method for computing and sharpening angular spectra, derived from low-order ambisonic signals, is presented in this paper, which is intended for high-resolution directional sound-field visualisation. The method relies on a re-assignment principle, whereby the directional energy for each grid point…

Cited by 0SourceScholar
2018

COMPASS: Coding and Multidirectional Parameterization of Ambisonic Sound Scenes

ICASSP 2018accepted

Current methods for immersive playback of spatial sound content aim at flexibility in terms of encoding and decoding, abstracting the two from the recording or playback setup. Ambisonics constitutes such a method, that is however signal-independent, and at low spatial resolutions fails to provide ap…

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
2015

Direction-of-arrival and diffuseness estimation above spatial aliasing for symmetrical directional microphone arrays

ICASSP 2015accepted

A method for direction-of-arrival (DOA) and diffuseness estimation is presented, which proves to be effective above the spatial aliasing frequency of the microphone array in use. The method assumes symmetrical circular or spherical arrays of directional microphones or microphone mounted on a rigid b…

Cited by 0SourceScholar