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Huiyuan Sun

8 accepted papers

2025

A Spherical-Harmonic Domain Selective Spatial Active Noise Control System Based on Sound Field Reproduction

ICASSP 2025accepted

Spatial active noise control (ANC) systems aim to control the noise field over a spatial region. However, when both the desired field and the interference field co-exist, typical ANC systems lack the ability to selectively reduce the interference field, resulting in distortions in the desired field.…

Cited by 0SourceScholar
2024

Active Noise Control Over 3D Space with A Dynamic Noise Source

ICASSP 2024accepted

Spatial Active noise control (ANC) systems are proposed to minimize the noise over a spatial region of interest around people’s heads by generating an anti-noise field with multiple microphones and loudspeakers. Recently, a realistic microphone geometry was designed to allow the system to monitor th…

Cited by 4SourceScholar
2024

From RIR to BRIR: A Sparse Recovery Beamforming Approach for Virtual Binaural Sound Rendering

ICASSP 2024accepted

The creation of a spatial sound scene through binaural rendering draws increasing research interest, given the rising application of virtual reality and augmented reality. High-fidelity augmented reality audio requires accurate room acoustic simulation. Typically, this is achieved with binaural rend…

Cited by 0SourceScholar
2023

Active Noise Control over 3D Space: A Realistic Error Microphone Geometry Design

ICASSP 2023accepted

Spatial active noise control (ANC) aims to reduce unwanted acoustic noise over a continuous spatial region by generating an anti-noise field with secondary loudspeakers. Conventionally, spatial ANC is achieved by using complex error microphone arrays such as grid or spherical geometry, which are imp…

Cited by 0SourceScholar
2023

Blind Source Counting and Separation with Relative Harmonic Coefficients

ICASSP 2023accepted

Blind source separation aims to recover a series of unmixed signals from only a mixture recording of source signals. For the mixture of speech signals where sources have unique spatial positions, the relative transfer function has been found useful as it contains the spatial information of each sour…

Cited by 0SourceScholar
2022

Spatial Active Noise Control with the Remote Microphone Technique: an Approach with a Moving Higher Order Microphone

ICASSP 2022accepted

Spatial active noise control (ANC) aims to reduce unwanted acoustic noise over a continuous spatial region by generating an anti-noise field with secondary loudspeakers. Conventionally, spatial ANC is achieved by using complex error microphone arrays such as grid or spherical geometry, which are imp…

Cited by 0SourceScholar
2020

Active Noise Control Over Multiple Regions: Performance Analysis

ICASSP 2020accepted

Active noise control (ANC) over space is a well-researched topic where multi-microphone, multi-loudspeaker systems are designed to minimize the noise over a spatial region of interest. In this paper, we perform an initial study on the more complex problem of simultaneous noise control over multiple…

Cited by 0SourceScholar
2019

Time Domain Spherical Harmonic Analysis for Adaptive Noise Cancellation over a Spatial Region

ICASSP 2019accepted

Active Noise Cancellation (ANC) is a well researched topic for minimizing unwanted acoustic noise, and spatial ANC is a recently introduced concept that focuses on continuous spatial regions. Adaptive filter designing for spatial ANC is often based on frequency-domain spherical harmonic decompositio…

Cited by 0SourceScholar