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GPU-accelerated Guided Source Separation for Meeting Transcription

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arxiv 2212.05271 v2 pith:UHM4PO3Z submitted 2022-12-10 eess.AS cs.SD

classification eess.AScs.SD
keywords meetingseparationsourcetranscriptionbenchmarksguidedimprovedinference
verification ladder T0 review T1 audit T2 compute T3 formal
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Guided source separation (GSS) is a type of target-speaker extraction method that relies on pre-computed speaker activities and blind source separation to perform front-end enhancement of overlapped speech signals. It was first proposed during the CHiME-5 challenge and provided significant improvements over the delay-and-sum beamforming baseline. Despite its strengths, however, the method has seen limited adoption for meeting transcription benchmarks primarily due to its high computation time. In this paper, we describe our improved implementation of GSS that leverages the power of modern GPU-based pipelines, including batched processing of frequencies and segments, to provide 300x speed-up over CPU-based inference. The improved inference time allows us to perform detailed ablation studies over several parameters of the GSS algorithm -- such as context duration, number of channels, and noise class, to name a few. We provide end-to-end reproducible pipelines for speaker-attributed transcription of popular meeting benchmarks: LibriCSS, AMI, and AliMeeting. Our code and recipes are publicly available: https://github.com/desh2608/gss.

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Cited by 2 Pith papers

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

  1. The Multimodal Information Based Speech Processing (MISP) 2025 Challenge: Audio-Visual Diarization and Recognition

    cs.SD 2025-05 conditional novelty 5.0 of 10

    The top MISP 2025 systems achieve DER 8.09%, CER 9.48%, and cpCER 11.56%, far outperforming the provided audio-visual baselines.

  2. Overlap-Adaptive Hybrid Speaker Diarization and ASR-Aware Observation Addition for MISP 2025 Challenge

    cs.SD 2025-05 conditional novelty 4.0 of 10

    A hybrid diarization and ASR system with a CER-supervised bridging module achieved the best results in two MISP 2025 tracks.

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