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An Automatic System for Acoustic Microphone Geometry Calibration based on Minimal Solvers

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arxiv 1610.02392 v1 pith:6GXYB33T submitted 2016-10-07 cs.SD

classification cs.SD
keywords geometrysoundsystemmicrophonechannelsconstraintsdemonstratedestimation
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In this paper, robust detection, tracking and geometry estimation methods are developed and combined into a system for estimating time-difference estimates, microphone localization and sound source movement. No assumptions on the 3D locations of the microphones and sound sources are made. The system is capable of tracking continuously moving sound sources in an reverberant environment. The multi-path components are explicitly tracked and used in the geometry estimation parts. The system is based on matching between pairs of channels using GCC-PHAT. Instead of taking a single maximum at each time instant from each such pair, we select the four strongest local maxima. This produce a set of hypothesis to work with in the subsequent steps, where consistency constraints between the channels and time-continuity constraints are exploited. In the paper it demonstrated how such detections can be used to estimate microphone positions, sound source movement and room geometry. The methods are tested and verified using real data from several reverberant environments. The evaluation demonstrated accuracy in the order of few millimeters.

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Forward citations

Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. An implicitization-based solution to the minimal 4s/6r ToA problem using Cayley--Menger determinants

    cs.SD 2026-06 unverdicted novelty 6.0 of 10

    New algebraic solver for the 4s/6r ToA problem constructs a 148x211 Macaulay matrix, reduces it to a 63x63 eigenproblem, and returns up to 38 real solutions with three orders of magnitude better accuracy than prior methods.

  2. SONNET: Enhancing Time Delay Estimation by Leveraging Simulated Audio

    cs.SD 2024-11 conditional novelty 6.0 of 10

    A network trained only on simulated audio, SONNET, estimates microphone time delays on real-world recordings more accurately than GCC-PHAT and improves downstream self-calibration.

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