From Scores to Evidence: Auditable Decisions Can Improve Speech Deepfake Detection

📅 2026-09-08
📈 Citations: 0
Influential: 0
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🤖 AI Summary
论文提出一种可审计决策记录方法,结合多种线索改进语音深度伪造检测,降低误判率并保留证据来源。
📝 Abstract
Speech deepfakes can mimic a speaker's voice convincingly enough to deceive listeners and automated systems. This has driven strong progress in speech deepfake detection, but most detectors still end with one score per utterance. That score is useful for ranking systems, yet it says little about why a borderline item should be trusted, deferred, or reviewed. Two utterances can fall in the same score band for different reasons, for example because passive and retrieval evidence disagree or because the keyed probe is unavailable. We ask whether the final decision can remain scalar without discarding that provenance. We answer this question with an auditable decision record that carries four aligned cues into a late calibration step: a passive detector score, a conditional keyed-probe score on a marked derivative, retrieval support, and a speaker-profile margin, together with explicit disagreement coordinates. On the 4,080-example ASVspoof 5 Track 1 matched subset, the fixed retrieval-augmented rule improves on retrieval-only evidence, from 15.84 percent to 11.91 percent EER, and late calibration over the full record reaches 8.43 percent EER. At a 33.75 percent review budget, the exposed cue union covers 82.85 percent of the calibrated model's errors. The best passive WavLM run still reaches 6.71 percent EER, so we do not present the decision record as a stronger standalone detector. Its contribution is to preserve the evidence behind each surfaced utterance while still producing one operating score for thresholding and review.
Problem

Research questions and friction points this paper is trying to address.

speech deepfake detection
utterance score
evidence preservation
auditable decision
Innovation

Methods, ideas, or system contributions that make the work stand out.

auditable decision record
late calibration
speech deepfake detection
evidence preservation
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