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语言声学和语音信号处理
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作者 李昌立 《物理教学》 北大核心 2002年第1期2-5,共4页
语言声学是声学的一个分支学科。它和数字信号处理、计算机科学等结合起来,提出了信息科学中的很多热门课题,例如语音编码、语音合成、语音识别--机语音通信等。本文把本领域的一些研究概况介绍给读者,希望能引起大家的兴趣,并能有... 语言声学是声学的一个分支学科。它和数字信号处理、计算机科学等结合起来,提出了信息科学中的很多热门课题,例如语音编码、语音合成、语音识别--机语音通信等。本文把本领域的一些研究概况介绍给读者,希望能引起大家的兴趣,并能有所作为。 展开更多
关键词 声学 信号处理 发声器音 声码器 合成
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全喉术后不同发音重建声学效果比较 被引量:4
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作者 刘波 郑琳琳 《临床耳鼻咽喉头颈外科杂志》 CAS 北大核心 2013年第18期1025-1027,共3页
喉全切除术是治疗晚期喉癌的主要方法。喉全切除术后发音问题是患者关注的重点之一。本文将食管音助发声器、电子喉与机械喉分别应用于喉全切除术后患者,并采用计算机声学测试方法对其声学特性进行比较分析,现报道如下。
关键词 喉全切除术 声学分析 食管发声器 电子喉 机械喉
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Self-powered acoustic source Iocator in underwater environment based on organic film triboelectric nano-generator 被引量:4
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作者 Aifang Yu Ming Song +4 位作者 Yan Zhang Yang Zhang Libo Chen Junyi Zhai Zhong Lin Wang 《Nano Research》 SCIE EI CAS CSCD 2015年第3期765-773,共9页
Detecting/sensing targets underwater has very important applications in environmental study, civil engineering and national security. In this paper, an organic-film based triboelectric nanogenerator (TENG) has been ... Detecting/sensing targets underwater has very important applications in environmental study, civil engineering and national security. In this paper, an organic-film based triboelectric nanogenerator (TENG) has been successfully demonstrated for the first time as a self-powered and high sensitivity acoustic sensor to detect underwater targets at low frequencies around 100 Hz. This innovative, cost-effective, simple-design TENG consists of a thin-film-based Cu electrode and a polytetrafluoroethylene (PTFE) film with nanostructures on its surfaces. On the basis of the coupling effect between triboelectrification and electrostatic induction, the sensor generates electrical output signals in response to incident sound waves. Operating at a resonance frequency of 110 Hz, under an acoustic pressure of 144.2 dBspc, the maximum open-circuit voltage and short-circuit current of the generator can respectively reach 65 V and 32 ~A underwater. The directional dependence pattern has a bi-directional shape with a total response angle of 60~. Its sensitivity is higher than -185 dB in the frequency range from 30 Hz to 200 Hz. The highest sensitivity is -146 dB at resonance frequency. The three-dimensional coordinates of an acoustic source were identified by four TENGs, self-powered active sensors, and the location of the acoustic source was determined with an error about 0.2 m. This study not only expands the application fields of TENGs from the atmosphere to water, but also shows the TENG is a promising acoustic source locator in underwater environments. 展开更多
关键词 triboelectricnanogenerator self-powered acousticsource locator UNDERWATER three dimensionalcoordinate
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