Figure 1. Structure of Ear[12]
Figure 2. Equal-loudness contour [13]
Figure 3. bone-conduction loudness contour [10]
Figure. 4. Structure of Bone Conduction Speaker [8]
Figure. 5. Frequency response of control
Figure. 6. Estimated frequency response of hearing with finger vibration device
참고문헌
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- Acoustics - Reference zero for the calibration of audiometric equipment - Part 3: Reference equivalent threshold force levels for pure tones and bone vibrators , KS I ISO389-3, Ministry of Environment, Environmental Measurement and Analysis Center, 2014.
- H.W. Park and S.W. Hahm, "Improvement of Concentration and Relaxation Efficiency through Specific Sounds: A convergent Study of Electroenc-ephalography and Cognitive Approach, " The 10th International Conference on Internet (ICONI 2018), ICONI 2018, Cambodia.
- Woo Chul Park, Snag Bong Lee and Sun hee Lee, Fundamentals of Sound Engineering, Chasong press, 2009.
- Kim Hong Jee, Yang Sook Ja, "The Effects of Education on the Prevention of Noise-Induced Hearing Loss in Adolescence," Journal of Korean Public Health Nursing, Vol.27, No.2, pp.357-371, 2013. https://doi.org/10.5932/JKPHN.2013.27.2.357
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- Hyeon Ku Park, Yong Gyu Shin, Hang Kim, Min Jeong Song, Sun Woo Kim, "Evaluation of Sound Quality for Urban Environmental Sound," Proceedings of The Korean Society for Noise and Vibration Engineering, pp.529-534, 2005.
- Hyung Woo Park, Seong Geon Bae and Myung Jin Bae, "A study on drinking judgment by the pitch analysis of speech signal," International Journal of Engineering and Technology, vol. 7, no. 6, pp. 2304-2308, 2016.
- L. R. Rabiner, and R. W. Schafer, Introduction to digital speech processing. Foundations and Trends(R) in Signal Processing, 2007.