Background Noise Reduction In Audio-Recorded Interviews: Recording and Post-Processing Strategies

Authors

DOI:

https://doi.org/10.63556/ankad.v10i3.471

Keywords:

interview, audio recording, background noise, noise reductio, digital signal processing

Abstract

This study aims to develop technical and methodological solution recommendations for audio recording quality problems frequently encountered during the data collection process in qualitative research. Audio recordings used in interviews, especially in field settings, are affected by environmental noise, microphone placement, acoustic conditions, and speaker-specific variables, which reduce the reliability and analyzability of the data. In addition to appropriate microphone selection, basic acoustic arrangements, and filtering strategies for the pre- and post-recording processes, a hybrid audio enhancement system based on digital signal processing (DSP) and artificial intelligence (AI) developed in a Python environment is presented. Accordingly, the system consists of steps including energy- and spectral flatness-based adaptive thresholding, hum and click/plosive cleanup, fully adaptive spectral noise reduction, and speech foregrounding. Also, it includes a Demucs-based source separation module and an automatic Turkish transcription module implemented with the Whisper model. System performance was evaluated by comparing the model output with a reference transcription created by the researcher. In this validation process, Word Error Rate (WER) and Character Error Rate (CER) metrics were calculated, and normalization procedures for Turkish characters were applied. According to the sample validation results, the system achieved 79%–95% word accuracy and 88%–97% character accuracy; WER was 0.203, and CER was 0.114. The findings show that the developed hybrid structure provides a usable technical framework for qualitative research in terms of both audio enhancement and automatic transcription accuracy.

References

Afifah, K., Arijal, M., Retdian, N., & Shima, T. (2018). Experiment on Hum Noise Suppression using N-path Notch Filter. 2018 International Symposium on Intelligent Signal Processing and Communication Systems (ISPACS), 519-522. https://doi.org/10.1109/ISPACS.2018.8923266

Aljumaily, R., & Abdulmohsin, H. (2024). Review: Noise Reduction Techniques for Enhancing Speech. Iraqi Journal of Science, 5798-5818. https://doi.org/10.24996/ijs.2024.65.10.38

Bhattacharya, P. C., & Tangsangiumvisai, N. (2017). An octave-scale multiband spectral subtraction noise reduction method for speech enhancement. 2017 IEEE 2nd International Conference on Signal and Image Processing (ICSIP), 346-350. https://doi.org/10.1109/SIPROCESS.2017.8124562

Bottalico, P. et. al. (2020). Reproducibility of Voice Parameters: The Effect of Room Acoustics and Microphones. Journal of voice: official journal of the Voice Foundation, 34(3), 320-334. https://doi.org/10.1016/j.jvoice.2018.10.016

Büyüköztürk, Ş., Kılıç Çakmak, E., Akgün, Ö. E., Karadeniz, Ş., & Demirel, F. (2018). Eğitimde bilimsel araştırma yöntemleri. Ankara: Pegem Akademi Yayınları.

Corbett, I. (2014). Mic It!: Microphones, Microphone Techniques, and Their Impact on the Final Mix. CRC Press.

Creswell, J. W. (2013). Qualitative inquiry and research design: Choosing among five approaches (3rd ed.). SAGE Publications.

Cui, P., Zhang, J., & Li, T. T. (2021). Research on Acoustic Environment in the Building of Nursing Homes Based on Sound Preference of the Elderly People: A Case Study in Harbin, China. Frontiers in Psychology, 12. https://doi.org/10.3389/fpsyg.2021.707457

Demir, Nurettin (2013). Ankara Örneğinde Ağızların Belgelenmesi İnceleme-Metinler Sözlük, TDK Yay., Ankara.

Eargle, J. (2012). The Microphone Book: From mono to stereo to surround - a guide to microphone design and application (2. bs). Routledge. https://doi.org/10.4324/9780080473468

Ekici, M. (2019). Halk Bilgisi (Folklor) Derleme ve İnceleme Yöntemleri, Geleneksel Yay., Ankara.

Eldwaik, O., & F. Li, F. (2018). Mitigating Wind Induced Noise in Outdoor Microphone Signals Using a Singular Spectral Subspace Method. Technologies, 6(1), 19. https://doi.org/10.3390/technologies6010019

Erdal, K. Y. (2023). Dijital İçerik (Podcast) Üretiminde Ses ve Müzik Teknolojileri. İçinde M. Kaptan (Ed.), Güzel Sanatlar Üzerine Güncel Konular ve Araştırmalar. Özgür Yayınları. https://doi.org/10.58830/ozgur.pub291

Fox, C. B., Israelsen-Augenstein, M., Jones, S., & Gillam, S. L. (2021). An Evaluation of Expedited Transcription Methods for School-Age Children’s Narrative Language: Automatic Speech Recognition and Real-Time Transcription. Journal of Speech, Language, and Hearing Research, 64(9), 3533-3548. https://doi.org/10.1044/2021_JSLHR-21-00096

Griffin, A., Zorilă, T.-C., & Stylianou, Y. (2015). Improved face-to-face communication using noise reduction and speech intelligibility enhancement. 2015 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP), 5103-5107. https://doi.org/10.1109/ICASSP.2015.7178943

Horvat, E. et. al. (2013). The beginner’s guide to doing qualitative research: How to get into the field, collect data, and write up your project. Teachers College Press.

Karasar, N. (2011). Bilimsel araştırma yöntemi. Ankara: Nobel Yayın Dağıtım.

Konuma, Y., & Asakura, T. (2023). Effects of microphone mounting location and gender on accuracy in speech recognition using a throat microphone. JASA Express Letters, 3(9), 095203. https://doi.org/10.1121/10.0020988

Krueger, R. A. (2014). Focus groups: A practical guide for applied research. Sage publications. https://books.google.com/books?hl=tr&lr=&id=8wASBAAAQBAJ&oi=fnd&pg=PP1&dq=focus+groups+a+practical+guide&ots=XgfNCB7NmX&sig=54PJ7gSe9xd4_9DJTTRVdgdUGUY

Liu, R. (2022). Speech noise reduction system based on combined filter. 2022 IEEE Conference on Telecommunications, Optics and Computer Science (TOCS), 611-616. https://doi.org/10.1109/TOCS56154.2022.10016136

MacCallum, J. K., Olszewski, A. E., Zhang, Y., & Jiang, J. J. (2011). Effects of Low-pass Filtering on Acoustic Analysis of Voice. Journal of voice : official journal of the Voice Foundation, 25(1), 15-20. https://doi.org/10.1016/j.jvoice.2009.08.004

Magsi, H., Sodhro, A. H., Chachar, F. A., & Abro, S. A. K. (2018). Analysis of signal noise reduction by using filters. 2018 International Conference on Computing, Mathematics and Engineering Technologies (iCoMET), 1-6. https://doi.org/10.1109/ICOMET.2018.8346412

Merriam, S. B., & Tisdell, E. J. (2016). Qualitative research: A guide to design and implementation (4th ed.). Jossey-Bass.

Nian, Z., Tu, Y.-H., Du, J., & Lee, C.-H. (2021). A Progressive Learning Approach to Adaptive Noise and Speech Estimation for Speech Enhancement and Noisy Speech Recognition. ICASSP 2021 - 2021 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP), 6913-6917. https://doi.org/10.1109/ICASSP39728.2021.9413395

Öçalan, M. (2006). Ağız Araştırmalarında Bilişim Teknolojilerinin Kullanılması ve Ağız Tezleri İçin Yenilik Önerileri. Erciyes Üniversitesi Sosyal Bilimler Enstitüsü Dergisi, 1(20), 169-189.

Özkurt, C. (2025). Investigation of the Effectiveness of Audio Processing and Filtering Strategies in Noisy Environments on Speech Recognition Performance. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 8(1), 222-247. https://doi.org/10.47495/okufbed.1457532

Özyıldırım, M. C. (2010). Kapalı Mekânların Akustik Tasarımında Ses Güçlendirme Sistemlerinin Uygulanma Koşulları. http://hdl.handle.net/11527/8238

Poulos, J., & Valle, R. (2021). Character-based handwritten text transcription with attention networks. Neural Computing and Applications, 33(16), 10563-10573. https://doi.org/10.1007/s00521-021-05813-1

Ramli, R. M., Noor, A. O. A., & Abdul Samad, S. (2017). Noise cancellation using selectable adaptive algorithm for speech in variable noise environment. International Journal of Speech Technology, 20(3), 535-542. https://doi.org/10.1007/s10772-017-9425-1

Retdian, N., & Afifah, K. (2020). Hum Noise Suppression Using an On-chip N-path Notch Filter. 2020 27th IEEE International Conference on Electronics, Circuits and Systems (ICECS), 1-4. https://doi.org/10.1109/ICECS49266.2020.9294831

Rogers, D. et. al. (2020). The City Under COVID-19: Podcasting as Digital Methodology. Tijdschrift Voor Economische En Sociale Geografie, 111(3), 434-450. https://doi.org/10.1111/tesg.12426

Roy, S. K., & Paliwal, K. K. (2021). A noise PSD estimation algorithm using derivative-based high-pass filter in non-stationary noise conditions. EURASIP Journal on Audio, Speech, and Music Processing, 2021(1), 32. https://doi.org/10.1186/s13636-021-00220-9

Segerstrom, E., Vanfretti, L., Mishra, C., Xu, X., Jones, K. D., & Gardner, R. M. (2022). Using Spectral Flatness to Detect and Label Power System Oscillations in the Presence of Intermittent Broadband Noise. 2022 IEEE Power & Energy Society General Meeting (PESGM), 1-5. https://doi.org/10.1109/PESGM48719.2022.9917166

Seidman, I. (2006). Interviewing as qualitative research: a guide for researchers in education and the social sciences (3. ed.). Teachers College Press.

Taylor, S. J., Bogdan, R. & DeVault, M. J. (2016). Introduction to qualitative research methods: A guide book and resource. 4. Ed. John Wiley& Sons.

Thompson, C. B., & Panacek, E. A. (1998). Basics of research (part 13): Qualitative research—An example. Air Medical Journal, 17(3), 121-124. https://doi.org/10.1016/S1067-991X(98)90110-9

Titze, I. R., & Winholtz, W. S. (1993). Effect of microphone type and placement on voice perturbation measurements. Journal of Speech and Hearing Research, 36(6), 1177-1190. https://doi.org/10.1044/jshr.3606.1177

Torresin, S. et. al. (2020). Acoustics for Supportive and Healthy Buildings: Emerging Themes on Indoor Soundscape Research. Sustainability, 12(15), 6054. https://doi.org/10.3390/su12156054

Tracy, S. J. (2013). Qualitative research methods: Collecting evidence, crafting analysis, communicating impact. Wiley-Blackwell.

Vergili, S. (2017). Kayıt Edilmiş İnsan Sesinde Konuşma Anlaşılırlığının Değerlendirilmesi ve Anlaşılırlığı Etkileyen Faktörler. Journal of International Social Research, 10(50), 1021-1026. https://doi.org/10.17719/jisr.2017.1731

Wang, W., & Yu, G. (2025). A-weighted Short-Time Fourier Transform: Enhanced Acoustic Signal Analysis of Rotating Machinery. Içinde Z. Wang, K. Zhang, K. Feng, Y. Xu, & W. Yang (Ed.), Proceedings of the TEPEN International Workshop on Fault Diagnostic and Prognostic (ss. 282-292). Springer Nature Switzerland. https://doi.org/10.1007/978-3-031-73407-6_27

Yin, R. K. (2011). Qualitative research from start to finish. The Guilford Press.

Yıldırım, A., & Şimşek, H. (2018). Sosyal bilimlerde nitel araştırma yöntemleri. Seçkin Yayıncılık.

Downloads

Published

2026-09-23

How to Cite

DEMİR, M., ERDAL, K. Y., & GÜMÜŞ, İ. (2026). Background Noise Reduction In Audio-Recorded Interviews: Recording and Post-Processing Strategies. Journal of Anatolian Cultural Research, 10(3), 1542-1558. https://doi.org/10.63556/ankad.v10i3.471