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AudioMan:电子行走辅助系统的设计与实现 被引量:1

AudioMan: Design and Implementation of Electronic Travel Aid
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摘要 针对现有的电子行走辅助(ETA)系统在普及和应用中的缺陷,自行设计了一种易使用的ETA系统模型AudioMan。该模型结合图像处理和听觉显示技术,给盲人用户提供道路方向和障碍物位置等环境信息。系统提出通过控制乐音的参数来实现可听化,用可听化来传递图像信息。可用性测试和评估结果表明,AudioMan所建立的用户听觉模型比现有的ETA系统更有效。 Aiming at the popularization and the application flaw in the existing Electronic Travel Aid (ETA) system, a model of ETA system named AudioMan is designed, which is simple in structure, easy to carry and use and of low cost. AudioMan uses computer digital image processing technology to acquire the information of the road direction and barrier positions of user' s environment. Also it uses auditory display technologies such as sonification, auditory icon to show blind people the environmental information. In this system, sonification technology is realized through the control of musical parameters; and the images information transmission can also be realized by sonification and auditory icon or earicon. The result of the usability test and appraisal indicates that the user sense of hearing model AudioMan establishes is more effective than the existing ETA system ; at the same time it will help the blind understand the information of the sound more quickly and effectively.
出处 《中国图象图形学报》 CSCD 北大核心 2007年第7期1249-1253,共5页 Journal of Image and Graphics
基金 浙江省自然科学基金项目(602060) 浙江省科技厅项目(2006C31006)
关键词 电子行走辅助 人机交互 听觉显示 可听化 electronic travel aid, human computer interaction, auditory display, sonification
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  • 1Kramer G, Walke B, Cook P, et al. Sonification report: status of the field and research agenda [EB/OL]. http://www.icad.org, 2004-06-12. 被引量:1
  • 2Ballora M, Pennycook B, Ivanov P, et al. Detection of obstructive sleep apnea through auditory display of heart rate variability[A].Proc of CiC 2000 [C]. Boston: Computers in Cardiology,2000.739-740. 被引量:1
  • 3Jovanov E, Wagner K, Radivojevic V, et al. Tactical audio and acoustic rendering in biomedical applications[J]. IEEE Transactions on Information Technology in Biomedicine, 1999,3(2): 109-118. 被引量:1
  • 4Krishnan S, Rangayyan RM, Bell GD, et al. Sonification of knee-joint vibration signals[A]. Proc of the 22nd Annual Int Conf of the IEEE(vol 3)[C]. Chicago IL: EMBS, 2000. 1995-1998. 被引量:1
  • 5Keith VN, Stephen B. Evaluation of a multimodal sonification and visualization of depth of market stock data[A]. Proc of the 2002 Int Conf on Auditory Display[C]. Kyoto: ICAD, 2002. 1-6. 被引量:1
  • 6Milios E, Kapralos B, Kopinska A, et al. Sonification of range information for 3-D space perception[J]. IEEE Transactions on Neural Systems and Rehabilitation Engineering, 2003, 11(4): 416-421. 被引量:1
  • 7Nagarajan R, Yaccob S, Sainayanan G. Role of object identification in sonification system for visually impaired[A]. Conf on Convergent Technologies for Asia-Pacific Region(vol 2)[C]. Bangalore,India:TENCON, 2003. 735-739. 被引量:1
  • 8Kaper HG, Wiebel E, Tipei S. Data sonification and sound visualization[J]. Computing in Science & Engineering, 1999, 1(4): 48-58. 被引量:1
  • 9Neuhoff JG, Kramer G, Wayand J. Pitch and loudness interact in auditory displays: can the data get lost in the map? [J]. Journal of Experimental Psychology, 2002, 8(1): 17-25. 被引量:1
  • 10Capelle C, Trullemans C, Arno P, et al. A real-time experimental prototype for enhancement of vision rehabilitation using auditory substitution[J]. IEEE Transactions on Biomedical Engineering, 1998, 45(10): 1279-1293. 被引量:1

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