Department of Electrical Engineering (ESAT-SCD)-Department of IBBT Future Health, KU Leuven, Kasteelpark Arenberg 10 B-3001 Heverlee, Belgium.
J Acoust Soc Am. 2012 Jun;131(6):4743-55. doi: 10.1121/1.4707534.
This paper evaluates noise reduction techniques in bilateral and binaural hearing aids. Adaptive implementations (on a real-time test platform) of the bilateral and binaural speech distortion weighted multichannel Wiener filter (SDW-MWF) and a competing bilateral fixed beamformer are evaluated. As the SDW-MWF relies on a voice activity detector (VAD), a realistic binaural VAD is also included. The test subjects (both normal hearing subjects and hearing aid users) are tested by an adaptive speech reception threshold (SRT) test in different spatial scenarios, including a realistic cafeteria scenario with nonstationary noise. The main conclusions are: (a) The binaural SDW-MWF can further improve the SRT (up to 2 dB) over the improvements achieved by bilateral algorithms, although a significant difference is only achievable if the binaural SDW-MWF uses a perfect VAD. However, in the cafeteria scenario only the binaural SDW-MWF achieves a significant SRT improvement (2.6 dB with perfect VAD, 2.2 dB with real VAD), for the group of hearing aid users. (b) There is no significant degradation when using a real VAD at the input signal-to-noise ratio (SNR) levels where the hearing aid users reach their SRT. (c) The bilateral SDW-MWF achieves no SRT improvements compared to the bilateral fixed beamformer.
本文评估了双边和双耳助听器中的降噪技术。在实时测试平台上,对双边和双耳语音失真加权多通道维纳滤波器(SDW-MWF)和竞争的双边固定波束形成器的自适应实现进行了评估。由于 SDW-MWF 依赖于语音活动检测器(VAD),因此还包括了一个现实的双耳 VAD。测试对象(正常听力受试者和助听器使用者)通过自适应语音接收阈值(SRT)测试在不同的空间场景中进行测试,包括具有非平稳噪声的现实自助餐厅场景。主要结论是:(a)与双边算法相比,双耳 SDW-MWF 可以进一步提高 SRT(最高可达 2 dB),尽管只有在双耳 SDW-MWF 使用完美 VAD 时才能实现显著差异。然而,在自助餐厅场景中,只有双耳 SDW-MWF 为助听器使用者组实现了显著的 SRT 提高(完美 VAD 时为 2.6 dB,真实 VAD 时为 2.2 dB)。(b)在助听器使用者达到 SRT 的输入信噪比(SNR)水平下,使用真实 VAD 不会导致明显的性能下降。(c)与双边固定波束形成器相比,双边 SDW-MWF 没有提高 SRT。