Volume 65 Issue 11
Nov.  2021
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ZHAO Zhengyi, ZHONG Bo, HE Longbiao, JI Fei, LIN Ying, TIAN Feng. Performance Comparison Between B-71 and B-81 Bone Conduction Headphones[J]. Metrology Science and Technology, 2021, 65(11): 11-13, 28. doi: 10.12338/j.issn.2096-9015.2020.9019
Citation: ZHAO Zhengyi, ZHONG Bo, HE Longbiao, JI Fei, LIN Ying, TIAN Feng. Performance Comparison Between B-71 and B-81 Bone Conduction Headphones[J]. Metrology Science and Technology, 2021, 65(11): 11-13, 28. doi: 10.12338/j.issn.2096-9015.2020.9019

Performance Comparison Between B-71 and B-81 Bone Conduction Headphones

doi: 10.12338/j.issn.2096-9015.2020.9019
  • Available Online: 2021-04-29
  • Publish Date: 2021-11-01
  • A measurement system for bone conduction headphone acoustic parameters was designed to explore the advantages and potential applications of new bone conduction headphones in audiology tests. The maximum output intensity and harmonic distortion of two commonly used bone conduction headphones, i.e. B-71 and B-81, were compared at five listening frequencies. At the same maximum output intensity, the harmonic distortion of B-81 headphones at four frequencies in the range 250 Hz to 2 000 Hz was significantly lower than that of B-71, and no significant difference in the harmonic distortion of B-71 and B-81 headphones was observed at 4 000 Hz. B-81 headphones were better than B-71 headphones in terms of both the maximum output intensity and the harmonic distortion, especially in the low and middle frequency bands. The test results show that B-81 can be used instead of B-71 in audiology-related tests.
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  • [1]
    陈炎明, 姚秋平, 时根火, 等. 测听设备纯音听力计检定规程: JJG388-2012[S]. 北京: 中国质检出版社, 2012.
    [2]
    于黎明, 陈洪文. 医用声学计量测试实用技术[M]. 北京: 中国计量出版社, 2006: 27-29.
    [3]
    Dirks D, Kamm C. Bone-Vibrator Measurements: Physical Characteristics and Behavioral Thresholds[J]. Journal of Speech Language & Hearing Research, 1975, 18(2): 242.
    [4]
    艾海明, 郭红阳, 王杰. 骨导振子标准制定的研究[J]. 中国听力语言康复科学杂志, 2017, 15(4): 266-268. doi: 10.3969/j.issn.1672-4933.2017.04.006
    [5]
    孙景阳. 压电式骨传导听觉装置振动器结构设计与试验研究[D]. 长春: 吉林大学, 2010.
    [6]
    王草山. 骨传导技术发展综述[J]. 化学工程与装备, 2016(1): 180-184.
    [7]
    Håkansson Bo E V. The balanced electromagnetic separation transducer a new bone conduction transducer.[J]. The Journal of the Acoustical Society of America, 2003, 113(2): 818-825. doi: 10.1121/1.1536633
    [8]
    韩东一, 翟所强, 韩维举. 临床听力学[M]. 北京: 中国协和医科大学出版社, 2008: 102-149.
    [9]
    全国声学标准化技术委员会. 测听方法第1部分: 纯音气导和骨导测听法: GB/T 16296.1-2018[S]. 北京: 中国标准出版社, 2018.
    [10]
    M. C. Gallichan, S. Ravenna, C. Giguère. High-frequency bone conduction audiometry using a piezoelectric transducer[J]. Canadian Acoustics, 1998: 70-71.
    [11]
    全国声学标准化技术委员会. 测听设备第1部分: 纯音听力计: GB/T 7341.1-2010[S]. 北京: 中国标准出版社, 2010.
    [12]
    全国声学标准化技术委员会. 校准测听设备的基准零级第3部分: 骨振器纯音基准等效阈力级: GB/T 4854.3-1998[S]. 北京: 中国标准出版社, 1998.
    [13]
    Karl-Johan Fredé, n Jansson, Bo Hå, et al. Electro-acoustic performance of the new bone vibrator Radioear B81: A comparison with the conventional Radioear B71[J]. International Journal of Audiology, 2015, 54(5): 334-340. doi: 10.3109/14992027.2014.980521
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