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Single and multi-microphone techniques of speech enhancement for reliable voice communications under adverse acoustic conditions

Single and multi-microphone techniques of speech enhancement for reliable voice communications under adverse acoustic conditions
单麦克风和多麦克风语音增强技术,可在不利声学条件下实现可靠​​的语音通信
批准号:
430444-2012
负责人:
Champagne, Benoit
金额:
$4.66万
依托单位:
依托单位国家:
加拿大
项目类别:
Collaborative Research and Development Grants
财政年份:
2012
资助国家:
加拿大
项目状态:
已结题
起止时间:
2012-01-01 至 2013-12-31

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中文摘要
翻译
针对各种环境声学噪声的语音增强是许多语音处理设备和系统的基本组成部分。它的应用范围很广,从用于无线接入的移动的电话和PDA,到用于低成本基于互联网接入的软件定义工具。降噪和语音增强算法不仅有助于提高语音信号的质量,而且还可以作为前端处理来提高语音编码和识别等其他应用的性能。尽管近年来取得了许多进展,但受中高水平非平稳噪声(例如:自助餐厅,忙碌街道,体育赛事)污染的语音的增强仍然是一个具有挑战性的研究途径,也是我们赞助商关注的一个具体问题。因此,该项目的主要目标是为这一关键任务开发改进的信号处理算法。拟议的工作由几个子项目组成,沿着两个主要途径构建,即:(1)开发单通道语音增强的新核心技术;(2)将这些技术扩展到配备多麦克风的音频设备。第一个主题的目的是探索新的基于码本的方法,利用现有的信息的扬声器和背景噪声,并研究使用先锋压缩感知原则的非平稳噪声的减少。第二个主题的重点是新的波束形成技术的发展,结合压缩感知,使最佳的相干组合的多个麦克风信号,和调查的新方法估计的噪声场统计,在这些系统中所需的。该项目中提出的改进语音增强算法将为我们的赞助商Microsemi提供实用且具有成本效益的解决方案,以应对非平稳噪声带来的许多挑战,从而帮助该公司开发和商业化用于语音应用的新DSP产品线,从而帮助该公司扩大其客户群和年销售额。该项目还包括一个重要的培训部分,将在麦吉尔大学和康考迪亚大学进行。
英文摘要
Speech enhancement against various environmental acoustic noises is a fundamental component of many voice processing devices and systems. It finds wide applications ranging from mobile phones and PDAs for wireless access, to software-defined tools for low-cost internet-based access. Noise reduction and speech enhancement algorithms not only contribute to improve the quality of speech signals, but also serve as front-end processing to improve the performance of other applications such as speech coding and recognition. In spite of many advances in recent years, the enhancement of speech contaminated by moderate to high levels of non-stationary noise (e.g: cafeteria, busy street, sporting events) remains a challenging research avenue and a specific problem of concern to our sponsor. The main objective of this project is therefore to develop improved signal processing algorithms for this critical task. The proposed work consists of several sub-projects structured along two main avenues, namely: (1) development of new core techniques for single-channel speech enhancement and; (2) extension of these techniques for audio devices equipped with multi-microphones. The first topic aims to explore new codebook-based approaches that take advantage of available information about the speaker and background noise, and to investigate the use of vanguard compressive sensing principles for the reduction of non-stationary noise. The second topic focuses on the development of new beamforming techniques that incorporate compressive sensing to enable optimal coherent combination of the multiple microphone signals, and the investigation of new approaches for estimation of the noise field statistics, as required in these systems. The improved speech enhancement algorithms proposed in this project will provide our sponsor, Microsemi with practical and cost-effective solutions to the many challenges posed by non-stationary acoustic noise in its quest to develop and commercialize new lines of DSP products for voice applications, thereby helping the company to grow its customer base and annual sales. The project also includes a significant training component that will take place at both McGill and Concordia universities.
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