振动扬声器输入波形对电动人工语音音质的影响

IF 0.9 Q4 ACOUSTICS Sound and Vibration Pub Date : 2020-01-01 DOI:10.32604/sv.2020.08119
T. Asakura, K. Shindo
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引用次数: 0

摘要

人们对电人工喉语音音质的改善进行了大量的研究,所产生的语音与自然语音相比难以听清。为此,有必要有效地改善输入信号的频率特性。在本研究中,为了提高电人工喉头发声的音质,首先对真实声音和人工声音的频率特性进行了比较,生成了三个能使人工声音的频率特性更接近真实声音的滤波器。然后,通过物理测量和以日语五个元音为对象的主观评价实验,研究了这些滤波器对人工语音质量的影响。结果发现,辅音/a/和/o/的可理解性有所提高,而辅音/i/、/u/和/e/的可理解性几乎没有提高。所得结果证实了优化振动扬声器输入信号的效果,并指出了进一步改进的地方。
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Effect of Input Waveform to Vibration Speaker on Sound Quality of Electric Artificial Voice
A number of studies have been conducted on the improvement of the sound quality of electrical artificial laryngeal speech, the speech produced has been difficult to hear compared to a natural voice. For this reason, it is necessary to effectively improve the frequency characteristics of the input signal. In the present study, to improve the sound quality of vocalization using an electrical artificial larynx, first, a comparison of the frequency characteristics between the real and artificial voices was conducted, and three filters that can make the frequency characteristics of the artificial voice closer to those of a real voice were generated. Then, the influence of these filters on the quality of the artificial voice was investigated via physical measurement and a subjective evaluation experiment targeted at Japanese five vowels. It was found that the intelligibility of artificial /a/ and /o/ sounds was improved, whereas little improvement was observed in the case of /i/, /u/, and /e/. The obtained results confirmed the effect of optimizing the input signal into the vibration speaker and indicated areas for further improvement.
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来源期刊
Sound and Vibration
Sound and Vibration 物理-工程:机械
CiteScore
1.50
自引率
33.30%
发文量
33
审稿时长
>12 weeks
期刊介绍: Sound & Vibration is a journal intended for individuals with broad-based interests in noise and vibration, dynamic measurements, structural analysis, computer-aided engineering, machinery reliability, and dynamic testing. The journal strives to publish referred papers reflecting the interests of research and practical engineering on any aspects of sound and vibration. Of particular interest are papers that report analytical, numerical and experimental methods of more relevance to practical applications. Papers are sought that contribute to the following general topics: -broad-based interests in noise and vibration- dynamic measurements- structural analysis- computer-aided engineering- machinery reliability- dynamic testing
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