Department of Electrical Engineering, The University of Texas at Dallas, Richardson, Texas 75080, USA.
J Acoust Soc Am. 2011 May;129(5):3221-32. doi: 10.1121/1.3559683.
Little is known about the extent to which reverberation affects speech intelligibility by cochlear implant (CI) listeners. Experiment 1 assessed CI users' performance using Institute of Electrical and Electronics Engineers (IEEE) sentences corrupted with varying degrees of reverberation. Reverberation times of 0.30, 0.60, 0.80, and 1.0 s were used. Results indicated that for all subjects tested, speech intelligibility decreased exponentially with an increase in reverberation time. A decaying-exponential model provided an excellent fit to the data. Experiment 2 evaluated (offline) a speech coding strategy for reverberation suppression using a channel-selection criterion based on the signal-to-reverberant ratio (SRR) of individual frequency channels. The SRR reflects implicitly the ratio of the energies of the signal originating from the early (and direct) reflections and the signal originating from the late reflections. Channels with SRR larger than a preset threshold were selected, while channels with SRR smaller than the threshold were zeroed out. Results in a highly reverberant scenario indicated that the proposed strategy led to substantial gains (over 60 percentage points) in speech intelligibility over the subjects' daily strategy. Further analysis indicated that the proposed channel-selection criterion reduces the temporal envelope smearing effects introduced by reverberation and also diminishes the self-masking effects responsible for flattened formants.
关于混响在何种程度上影响人工耳蜗(CI)使用者的言语可懂度,目前知之甚少。实验 1 使用不同混响程度的 Institute of Electrical and Electronics Engineers(IEEE)句子评估了 CI 用户的表现。使用的混响时间为 0.30、0.60、0.80 和 1.0 s。结果表明,对于所有测试的受试者,言语可懂度随混响时间的增加呈指数下降。衰减指数模型很好地拟合了数据。实验 2 评估了(离线)基于单个频率通道的信号与混响比(SRR)的通道选择标准的混响抑制语音编码策略。SRR 隐含地反映了源自早期(和直接)反射的信号能量与源自后期反射的信号能量的比值。选择 SRR 大于预设阈值的通道,而将 SRR 小于阈值的通道置零。在高度混响的情况下的结果表明,与受试者的日常策略相比,所提出的策略可使言语可懂度显著提高(超过 60 个百分点)。进一步的分析表明,所提出的通道选择标准减少了混响引起的时间包络模糊效应,并降低了导致音高平坦的自掩蔽效应。