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Unidirectional Sound Signage for Speech Frequency Range Using Multiple-Loudspeaker Reproduction System

机译:使用多扬声器再现系统实现语音频率范围的单向声音标牌

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Human safety is the most important issue in disaster management. Speech is a sound signal containing information that is easily and quickly understood by humans. Using speech as sound signage in emergency systems can effectively increase human safety in low or poor visibility conditions such as in smoke-filled situations. However, reflections of sound through walls, floor surfaces, and ceilings will affect clarity of speech. Unfortunately, because of the characteristics of sound reproduction systems, a single loudspeaker propagates sound waves omni-directionally at low frequencies. This paper proposes a simple multiple-loudspeaker system for reproducing sound with uni-directional characteristics. The proposed system consists mainly of a primary loudspeaker for introducing sound in the desired beam, a secondary loudspeaker for reducing gain in the undesired direction, and digital filters. An adaptive finite-impulse-response (FIR) filter is used to produce the controlling sound by implementing a filtered-x least-mean-square algorithm, and a delay filter for adjusting the time alignment of sound propagation between primary and secondary sources at the control point. Several operational conditions for illustrating real situations and reflections were considered in an anechoic chamber. Experimental results show the directivity patterns of the proposed multiple-loudspeaker system for the required conditions. In a low frequency range, the system is able to control unidirectional propagation; there is a sound beam in the desired direction and, conversely, reduction of gain in the undesired direction around the control point.
机译:人身安全是灾害管理中最重要的问题。语音是一种声音信号,其中包含人类可以轻松快速理解的信息。在紧急情况系统中,将语音用作声音标牌可以有效地提高在低烟或低能见度条件下(例如在烟雾弥漫的情况下)的人员安全。但是,声音通过墙壁,地板表面和天花板的反射会影响语音的清晰度。不幸的是,由于声音再现系统的特性,单个扬声器在低频下全方位传播声波。本文提出了一种简单的多扬声器系统,用于再现具有单向特性的声音。所提出的系统主要由用于将声音引入所需波束中的主扬声器,用于减小不希望的方向上的增益的辅助扬声器以及数字滤波器组成。自适应有限冲激响应(FIR)滤波器用于通过实施Filtered-x最小均方算法来产生控制声音,而延迟滤波器则用于调整噪声在主声源和辅助声源之间的传播时间对准。控制点。在消声室内考虑了几种用于说明实际情况和反射的操作条件。实验结果表明,所提出的多扬声器系统在所需条件下的指向性模式。在低频范围内,系统能够控制单向传播。沿期望方向存在声束,相反,围绕控制点沿不期望方向存在增益降低。

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