基于微控制器的无线制作空间声分布测量工具

Deanu Haratinu Tu’u, Iwan Sugriwan, Arfan Eko Fahrudin
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引用次数: 2

摘要

声音分布和背景噪声是书房制作中的一个重要方面。适当分布的声音可以确保房间里的每个人都能听到相同质量的声音。良好的音质被定义为不会显著削弱其声源特性(声音强度和声音清晰度)的声音。在本研究中,制作了一种基于Arduino微控制器的室内声音分布测量仪,该微控制器配备了nRF24L01以实现无线功能。制造的测量仪器由4个发射器设备和2个接收器设备组成。发射器设备是一个Arduino Pro Mini微控制器,配备nRF24L01和声音传感器。接收器设备是一个配备nRF24L01的Arduino Nano微控制器,该微控制器连接到PC,以及一个配备了nRF24R01的Aruino Pro Mini微控制器,连接到扬声器。制造的测量仪器配备了基于Python 2.7的采集软件,可实时采集数据并以CSV(逗号分隔值)格式存储。对配备有声音传感器的发射器设备和连接到扬声器的接收器设备进行了测试。将变送器设备与标准声级计进行了比较,显示出0.65%-1.24%的误差百分比。对接收装置的测试表明,只有在2000Hz和3000Hz的频率下才能达到100dB的声强。在声音分布的测量上,获得了爱因斯坦霍尔声音分布的原始数据,包括16个声级测量点、7个声源位置变化和5个声源频率变化。FMIPA ULM的Einstein Hall的背景噪声测量显示,该值在57 dB–60,56 dB之间变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pembuatan Alat Ukur Distribusi Bunyi dalam Ruang, secara Nirkabel Berbasis Mikrokontroler
Sound distribution and background noise, is an important aspect in the making of study-purposed room. Properly distributed sound would ensure everyone in the room to hear the same quality of sound. Good sound quality is defined as a sound that did not diminish its character (sound intensity and sound clarity) significantly to its sound source. In this research, has been fabricated an in-room sound distribution measuring instrument, based on the Arduino microcontroller that equipped with nRF24L01 to be wirelessly functionated. The fabricated measuring instrument consist of 4 transmitter devices and 2 receiver devices. The transmitter devices is an Arduino Pro Mini microcontroller that equipped with nRF24L01 and a sound sensor. The receiver devices is an Arduino Nano microcontroller equipped with nRF24L01, that connected to a PC, and an Arduino Pro Mini microcontroller equipped with nRF24L01 that connected to a speaker. The fabricated measuring instrument equipped with a Python 2.7-based acquisition software to acquire data in real time and store it in CSV (Comma Separated Value) format. Test was carried out to the transmitter devices that equipped with a sound sensor and the receiver device that connected to a speaker. The transmitter devices was compared with a standard sound level meter, and showed 0,65% - 1,24% of error percentage. The test made to receiver device showed that sound intensity of 100 dB could only be achieved with frequency of 2000 Hz and 3000 Hz. On  the measurement of sound distribution, the primary data of Einstein Hall sound distribution has been obtained, with 16 sound level measuring point, 7 variations of sound source position, and 5 variations of sound source frequency.The background noise measurement of Einstein Hall of the FMIPA ULM, showed the value varied between 57 dB – 60,56 dB.
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