Audio signal processing technology in Arduino controlling

Research Article
Open access

Audio signal processing technology in Arduino controlling

Deze Kong 1*
  • 1 The George Washington University    
  • *corresponding author kdz@gwu.edu
Published on 21 February 2024 | https://doi.org/10.54254/2755-2721/39/20230616
ACE Vol.39
ISSN (Print): 2755-273X
ISSN (Online): 2755-2721
ISBN (Print): 978-1-83558-303-6
ISBN (Online): 978-1-83558-304-3

Abstract

In recent years, the application of audio signal processing technology is frequent, which is beneficial for developing both technologies. A significant advantage of the application of audio signal processing is allowing users to input their commands by voice, which is why it is widely used in Arduino controlling. Besides, Arduino can also be applied in audio signal processing. Because Arduino is an open-source multi-functions platform with the features of low cost, its utilization will be wider and more flexible in audio-digital signal processing and many other fields in the following time. So, the combination of these two technologies can produce more and more meaningful outcomes. This paper first introduces the technical features and application scenarios of these two technologies respectively, and then analyzes some samples of the combination of the two technologies specifically and summarizes them in different aspects to know about the current situation of these fields. By deeply understanding the inadequacies of these projects, this paper also analyzes the future developing trends of the fields that can solve the current problems and improve the quality of the projects.

Keywords:

Arduino, audio signal processing, controlling

Kong,D. (2024). Audio signal processing technology in Arduino controlling . Applied and Computational Engineering,39,289-295.
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References

[1]. Z. Raiyan, M. S. Nawaz, A. K. M. A. Adnan and M. H. Imam, "Design of an Arduino based voice-controlled automated wheelchair," 2017 IEEE Region 10 Humanitarian Technology Conference (R10-HTC), Dhaka, Bangladesh, 2017, pp. 267-270, 2017.

[2]. Raj, L. D. W., Santhosh, K., Subash, S., Sujin, C., & Tharun, P. “Voice controlled door lock system using Matlab and Arduino,” In 2019 IEEE International conference on system, computation, automation and networking (ICSCAN), IEEE, pp. 1-6, March 2019.

[3]. Chattoraj, S. “Smart Home Automation based on different sensors and Arduino as the master controller,” International Journal of Scientific and Research Publications, 5(10), pp. 1-4, 2015.

[4]. Ugalde, M. M., Ugalde, I. M., Gonzalez, A. D., Rangel, J. P. B., Hernandez, M. T., Hernandez, L. A. M., & Tovar, M. D. R. M. “Design of an inexpensive ethernet/arduino-based dmx-control system via network applied to musical fountain,” In 2016 International Conference on Signal Processing, Communication, Power and Embedded System (SCOPES), IEEE, pp. 2099-2104, October 2016.

[5]. Chhatbar, H., Trivedi, J., Chauhan, R., & Bhatt, D. “Secured speech controlled robot using MATLAB and Arduino,” International Journal of Modern Trends in Engineering and Research, 2(4), 2015.

[6]. Mishra, Y., Marwah, G. K., & Verma, S. “Arduino Based Smart RFID Security and Attendance System with Audio Acknowledgement,” International Journal of Engineering Research and Technology, 4(1),pp. 363-367, 2015.

[7]. Bianchi, A. J., & Queiroz, M. “Real time digital audio processing using Arduino,” In Proceedings of the Sound and Music Computing Conference, Stockholm, Sweden, pp. 538-545, July 2013.

[8]. De Lauretis, L., Lombardi, T., Costantini, S., & Clementini, L. “An Arduino-based Device to Detect Dangerous Audio Noises,” In IoTBDS, pp. 303-308, 2021.

[9]. Gaviola, A. D. S., Rivai, M., & Kusuma, H. “Audio beam steering with phased array method using Arduino Due Microcontroller,” In 2018 International Conference on Information and Communications Technology (ICOIACT), IEEE, pp. 597-600, March 2018.

[10]. Anbuselvan, A., Shajan, D. A., Deepak, M., & Sethuramalingam, T. K. “Arduino based WiFi enabled Wireless Speaker,” International Journal on Recent and Innovation Trends in Computing and Communication (IJRITCC), 1(4),pp. 245-250, 2013.

[11]. Subha, T. D., Reddy, D. V., Suresh, T., Sekhar, E. G., Krishna, C. M., & Kumar, A. V. “The Role of Arduino Uno in Voice Recognition Process with Atmega328P,” In 2022 International Interdisciplinary Humanitarian Conference for Sustainability (IIHC), IEEE, pp. 528-531, November 2022.

[12]. Hamza, A. R., & Shiekh, M. A. H. “Design and Implementation of Active Noise Cancellation for Car Cabin on Sulaimania Roads Using Arduino Embedded System,” Journal of Engineering, 28(9), pp. 45-69, 2022.


Cite this article

Kong,D. (2024). Audio signal processing technology in Arduino controlling . Applied and Computational Engineering,39,289-295.

Data availability

The datasets used and/or analyzed during the current study will be available from the authors upon reasonable request.

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About volume

Volume title: Proceedings of the 2023 International Conference on Machine Learning and Automation

ISBN:978-1-83558-303-6(Print) / 978-1-83558-304-3(Online)
Editor:Mustafa İSTANBULLU
Conference website: https://2023.confmla.org/
Conference date: 18 October 2023
Series: Applied and Computational Engineering
Volume number: Vol.39
ISSN:2755-2721(Print) / 2755-273X(Online)

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References

[1]. Z. Raiyan, M. S. Nawaz, A. K. M. A. Adnan and M. H. Imam, "Design of an Arduino based voice-controlled automated wheelchair," 2017 IEEE Region 10 Humanitarian Technology Conference (R10-HTC), Dhaka, Bangladesh, 2017, pp. 267-270, 2017.

[2]. Raj, L. D. W., Santhosh, K., Subash, S., Sujin, C., & Tharun, P. “Voice controlled door lock system using Matlab and Arduino,” In 2019 IEEE International conference on system, computation, automation and networking (ICSCAN), IEEE, pp. 1-6, March 2019.

[3]. Chattoraj, S. “Smart Home Automation based on different sensors and Arduino as the master controller,” International Journal of Scientific and Research Publications, 5(10), pp. 1-4, 2015.

[4]. Ugalde, M. M., Ugalde, I. M., Gonzalez, A. D., Rangel, J. P. B., Hernandez, M. T., Hernandez, L. A. M., & Tovar, M. D. R. M. “Design of an inexpensive ethernet/arduino-based dmx-control system via network applied to musical fountain,” In 2016 International Conference on Signal Processing, Communication, Power and Embedded System (SCOPES), IEEE, pp. 2099-2104, October 2016.

[5]. Chhatbar, H., Trivedi, J., Chauhan, R., & Bhatt, D. “Secured speech controlled robot using MATLAB and Arduino,” International Journal of Modern Trends in Engineering and Research, 2(4), 2015.

[6]. Mishra, Y., Marwah, G. K., & Verma, S. “Arduino Based Smart RFID Security and Attendance System with Audio Acknowledgement,” International Journal of Engineering Research and Technology, 4(1),pp. 363-367, 2015.

[7]. Bianchi, A. J., & Queiroz, M. “Real time digital audio processing using Arduino,” In Proceedings of the Sound and Music Computing Conference, Stockholm, Sweden, pp. 538-545, July 2013.

[8]. De Lauretis, L., Lombardi, T., Costantini, S., & Clementini, L. “An Arduino-based Device to Detect Dangerous Audio Noises,” In IoTBDS, pp. 303-308, 2021.

[9]. Gaviola, A. D. S., Rivai, M., & Kusuma, H. “Audio beam steering with phased array method using Arduino Due Microcontroller,” In 2018 International Conference on Information and Communications Technology (ICOIACT), IEEE, pp. 597-600, March 2018.

[10]. Anbuselvan, A., Shajan, D. A., Deepak, M., & Sethuramalingam, T. K. “Arduino based WiFi enabled Wireless Speaker,” International Journal on Recent and Innovation Trends in Computing and Communication (IJRITCC), 1(4),pp. 245-250, 2013.

[11]. Subha, T. D., Reddy, D. V., Suresh, T., Sekhar, E. G., Krishna, C. M., & Kumar, A. V. “The Role of Arduino Uno in Voice Recognition Process with Atmega328P,” In 2022 International Interdisciplinary Humanitarian Conference for Sustainability (IIHC), IEEE, pp. 528-531, November 2022.

[12]. Hamza, A. R., & Shiekh, M. A. H. “Design and Implementation of Active Noise Cancellation for Car Cabin on Sulaimania Roads Using Arduino Embedded System,” Journal of Engineering, 28(9), pp. 45-69, 2022.