arXiv · 2609.23164
Signal-Informed Temporal Routing for Vinyl Defect Regime Detection
Abstract
Vinyl restoration systems must distinguish isolated clicks, short bursts, dense crackle, and overlapping damage before selecting a repair operation. We present a lightweight two-stage detector in which signal-informed sparse, burst, and dense experts produce complementary defect evidence, and a temporal backend converts that evidence into stable repair regimes. The backend factors the five-way decision hierarchically, applies a validation-only mixed regime gate, and decodes with validation-selected transition penalties that outperform a maximum-likelihood transition matrix on the same emissions. On a source-separated synthetic benchmark of 597 non-overlapping 15 s excerpts drawn from 21 recordings, the held-out system reaches 0.730 pooled five-class macro F1 (95% CI 0.694-0.761), an improvement of 0.043 over a flat frame-level router (paired bootstrap p=0.001). Clean and dense frames are highly reliable, while sparse, burst, and mixed frames remain far more ambiguous.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Yi-Hung Kan, Homayoon Beigi. 2026-09-19. Signal-Informed Temporal Routing for Vinyl Defect Regime Detection. https://arxiv.org/abs/2609.23164
Cite the original work for its findings. Save a collection to share your selection of sources.