arXiv:2510.09236eess.AScs.SD2025-10

实测汽车麦克风频响特性如何影响语音质量和识别效果

Effects of automotive microphone frequency response characteristics and noise conditions on speech and ASR quality -- an experimental evaluation

  • 用实车噪声数据测试不同麦克风频响对音质的影响
  • 发现频宽与振幅响应形状显著影响语音感知质量与识别准确率
  • 为车企选型提供实证依据,适合车载系统设计者参考

在选择用于车载免提通信或自动语音识别(ASR)的麦克风时,制造商通常依据标准(如ITU-P.1110、ITU-P.1120)要求采用宽带、超宽带甚至全频段规格。然而,受限于车内麦克风安装位置及车载环境可靠性要求,实现理想频段常具挑战。目前尚无共识或充分数据说明各项麦克风特性对实际性能的影响。为此,本文利用真实车辆中不同驾驶条件下采集的噪声信号,实验研究了麦克风频响特性与语音通信质量及ASR引擎表现之间的关系。重点分析麦克风频宽和幅度频率响应形状对感知语音质量的影响,使用ETSI TS 103 281标准(S-MOS、N-MOS、G-MOS)及信噪比(SNR)等指标评估语音质量,以词错误率(WER)评估ASR性能。研究结果有助于理解哪些频响特性对车载应用更关键,为合理制定麦克风规格提供依据。

原文摘要 · Abstract (English)

Upon choosing microphones for automotive hands-free communication or Automatic Speech Recognition (ASR) applications, OEMs typically specify wideband, super wideband or even fullband requirements following established standard recommendations (e.g., ITU-P.1110, ITU-P.1120). In practice, it is often challenging to achieve the preferred bandwidth for an automotive microphone when considering limitations and constraints on microphone placement inside the cabin, and the automotive grade environmental robustness requirements. On the other hand, there seems to be no consensus or sufficient data on the effect of each microphone characteristic on the actual performance. As an attempt to answer this question, we used noise signals recorded in real vehicles and under various driving conditions to experimentally study the relationship between the microphones' characteristics and the final audio quality of speech communication and performance of ASR engines. We focus on how variations in microphone bandwidth and amplitude frequency response shapes affect the perceptual speech quality. The speech quality results are compared by using ETSI TS 103 281 metrics (S-MOS, N-MOS, G-MOS) and ancillary metrics such as SNR. The ASR results are evaluated with standard metrics such as Word Error Rate (WER). Findings from this study provide knowledge in the understanding of what microphone frequency response characteristics are more relevant for audio quality and choice of proper microphone specifications, particularly for automotive applications.

语音质量车载麦克风ASR

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