Author:
P.M Dinesh,B Yogesh Bala,S Manoj Kumar,R.S Sabeenian,M.E Paramasivam,A Manjunathan
Abstract
This paper involves utilizing an Arduino Uno as the primary hardware to measure the sound level in a library. The amount of noise in the region is measured using a sound sensor. The sound sensor signals are amplified using the operational amplifier function of the integrated circuit LM 567. There are two types of output available: audio and visual. The audio output takes the form of a personalized message that is played over speakers. LEDs are employed to offer visual feedback, with white LEDs used in noise-free environments (sound level 45 dB, yellow LEDs used when sound levels are above 65 decibels, and red LEDs used when sound levels are significantly above 80 decibels). A TIP 220 transistor is used to amplify the signals. A TIP 220 transistor amplifies the signals to create an output for the speaker. There is an audio message that corresponds to each sound level.
Reference18 articles.
1. Design of Sound Level Meter Using Sound Sensor Based on Arduino Uno
2. Juniastel R., Sari N.K.. Detection system of sound noise level (SNL) based on condenser microphone sensor, J Phys Conf Ser. 970, 1. IOP Publishing, (2018)
3. Janeera D. A., Smart embedded framework using arduino and IoT for real-time noise and air pollution monitoring and alert system. 2021 International Conference on Artificial Intelligence and Smart Systems (ICAIS). IEEE, (2021)
4. Janeera D. A., Poovizhi H., Sheik Haseena S. S., Nivetha S., Smart Embedded Framework using Arduino and IoT for Real-Time Noise and Air Pollution Monitoring and Alert system, 2021 International Conference on Artificial Intelligence and Smart Systems (ICAIS), Coimbatore, India, 1416–1420 (2021).
5. Cantuna J. Granda, Solorzano S., Clairand J.M.. Noise pollution measurement system using wireless sensor network and ban sensors, 2017 Fourth International Conference on eDemocracy & eGovernment (ICEDEG). IEEE, (2017)
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
1. Gesture Controlled Vehicle for Armed Service;2024 4th International Conference on Innovative Practices in Technology and Management (ICIPTM);2024-02-21