基于Arduino Due微控制器的相控阵音频波束控制方法

Amaro Da Silva Gaviola, M. Rivai, Hendra Kusuma
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引用次数: 0

摘要

音频系统需要大量的功率来将声能传输到房间内外的所有区域。声波能在空气中传播,在传播过程中受到很大的吸收。通常人们或听众只存在于一定距离和方向的区域,因此很多声音能量被浪费了。聚焦技术可以将声能传输到一定方向和距离的听众区域。因此,该技术可以显著节省能源。音频转向系统采用机械过程,对电力驱动功率要求高,耗时长。本文采用相位差法和相控阵法对四个扬声器系列的声能导引系统进行了研究。因此,不需要机械扬声器修饰器。计算机作为图形用户界面,通过Arduino Due微控制器生成每条路径的延迟配置模式,确定接收声音的观众的方向和距离。所以这个过程可以自动引导声能。实验结果表明,该系统在所选角度或目标角度处产生的声强大于其他角度。波束导向音频预计将用于大型会议室或户外,在那里,声音能量只根据听众的面积和距离发送到所需的功率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Audio beam steering with phased array method using Arduino Due Microcontroller
The audio system requires a large amount of power to transmit sound energy to all areas both inside and outside the room. Sound waves can propagate in the air and undergo great absorption in their propagation. Often people or audiences only exist in areas with a certain distance and direction, so much of the sound energy is wasted. The focusing technique can be applied to transmit sound energy to the audience area with a certain direction and distance. Thus, this technique can save energy significantly. Audio steering system with mechanical process, requires high electric driving power and takes a long time. In this research, a sound energy guiding system from four loudspeaker series has been done with phase difference or phased array method. So, there is no mechanical loudspeaker modifiers are needed. The computer is used as a Graphical User Interface to determine the direction and distance of the audience who will receive the sound, by generating the delay configuration pattern of each path using Arduino Due Microcontroller. So this process can work automatically in directing the sound energy. The test results show that the sound intensity generated by the system is greater at the selected or target angle than the others. Beam Steering audio is expected to be used for large meeting rooms or outdoors, where the sound energy is only sent towards the desired power depending on the area and distance of the audience.
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