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Martin Bo Møller

4 accepted papers

2023

Robust Fir Filters for Wireless Low-Frequency Sound Zones

ICASSP 2023accepted

Low frequency personal sound zones can be created by controlling the sound pressure in separate spatially confined regions. The performance of a sound zone system using wireless communication may be degraded due to potential packet losses. In this paper, we propose robust FIR filters for low-frequen…

Cited by 0SourceScholar
2022

Increasing Loudness in Audio Signals: A Perceptually Motivated Approach to Preserve Audio Quality

ICASSP 2022accepted

We present a method to maintain the subjective perception of volume of audio signals and, at the same time, reduce their absolute peak value. We focus on achieving this without compromising the perceived audio quality. This is specially useful, for example, to maximize the perceived reproduction lev…

Cited by 1SourceScholar
2017

Greedy alternative for room geometry estimation from acoustic echoes: A subspace-based method

ICASSP 2017accepted

In this paper, we present a greedy subspace method for the acoustic echoes labeling problem, which occurs in applications such as source localization and room geometry estimation. The orthogonal projection into the null space of the microphones position matrix is used to filter and sort all possible…

Cited by 0SourceScholar
2016

Time domain acoustic contrast control implementation of sound zones for low-frequency input signals

ICASSP 2016accepted

Sound zones are two or more regions within a listening space where listeners are provided with personal audio. Acoustic contrast control (ACC) is a sound zoning method that maximizes the average squared sound pressure in one zone constrained to constant pressure in other zones. State-of-the-art time…

Cited by 17SourceScholar