arXiv:2605.07694eess.AScs.AI2026-05中稿 · publication in IWA…

研究单通道语音距离估计中早期与混响对精度的影响。

Dependence on Early and Late Reverberation of Single-Channel Speaker Distance Estimation

论文配图:Dependence on Early and Late Reverberation of Single-Channel Speaker Distance Estimation
图 1 · 摘自论文原文
  • 用混响时间划分早期/晚期反射,对比不同成分对模型影响
  • 无时间校准下误差达1.29米,早期反射最有效
  • 有时间校准时误差降至0.14米,仅依赖传播延迟

单通道语音距离估计在模拟环境中已实现厘米级精度,但其依赖的房间冲激响应(RIR)成分及对录音条件的敏感性尚不明确。本文利用回声密度函数估算的混响时间作为分界,将模拟RIR分解为四种变体:全响应、仅直达声、无晚期混响、无早期反射。设计了从完全校准(同步采集、已知源级)到完全未校准(任意起始时刻、未知音量)的四种校准场景,在匹配数据集上评估所有组合。结果表明,无时间校准时,平均绝对误差(MAE)上升至1.29米,模型依赖混响特征,其中早期反射最为关键。进一步分析显示,随着早期能量增强(高DRR、高C50),估计精度提升;在强混响环境(长T60)中性能下降。当具备时间校准时,模型仅利用传播延迟即可达到0.14米的MAE,且不受RIR内容影响。

原文摘要 · Abstract (English)

Single-channel speaker distance estimation has recently achieved centimeter-level accuracy in simulated environments, yet it remains unclear which components of the room impulse response (RIR) the model exploits and how performance depends on the recording conditions. In this work, we decompose simulated RIRs into four variants (full, direct-only, no-late, and no-early) using the mixing time estimated from the echo density function as the boundary between early reflections and late reverberation. We define four calibration scenarios, from fully calibrated (synchronised capture, known source level) to fully uncalibrated (arbitrary onset, unknown level), and evaluate all combinations on a matched dataset. Results show that without time calibration, mean absolute error (MAE) increases to $1.29$ m and the model extracts reverberation-based cues, with early reflections emerging as the most informative component. Further analysis against DRR, $C_{50}$, and $T_{60}$ confirms that estimation accuracy improves with stronger early energy and degrades in highly reverberant environments. When time calibration is available, the model achieves a MAE of $0.14$ m by extracting the propagation delay alone, regardless of the RIR content.

语音距离估计混响分析房间脉冲响应音频处理

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