Document Type : Original Article

Author

Assistant Professor, Information, and Artificial Intelligence Research Group, National library and archives of I.R. Tehran, Iran

Abstract

Purpose: This study presents a user interface model for library websites tailored to visually impaired (VI) users, leveraging the potential of artificial intelligence (AI).
Method: Through exploratory observation of 33 visually impaired users performing three real tasks on library websites, key factors affecting usability were identified. Data collection involved formal usability testing combined with the think-aloud protocol. The interfaces of four prominent Iranian library websites were analyzed. Content analysis supported by MAXQDA software was used to interpret the data, and Cohen’s kappa coefficient was employed to measure inter-coder reliability.
Findings: The main findings of this study revealed that a logical webpage structure and clear descriptive headings have the most significant impact on usability. Additionally, inconsistent labeling, search and results presentation complexity, lack of interface customization options, and technical challenges were identified as major accessibility barriers for visually impaired users. AI-based solutions such as automatic error correction, intelligent voice assistants, AI-powered question answering, result clustering, smart filtering, text and image processing, summarization, and interface personalization were proposed to enhance the user experience. Overall, by integrating user feedback and cutting-edge AI technologies, libraries can create more inclusive digital environments that cater effectively to the needs of visually impaired patrons, setting a precedent for future developments in accessible information retrieval systems.
Conclusion: Improving library website usability for visually impaired users requires a nuanced understanding of their specific needs. This research contributes by identifying underexplored AI-based strategies that can significantly enhance accessibility and user satisfaction. Future studies should assess the long-term effectiveness of these approaches and explore additional enhancements.

Keywords

Abhishek, S., Sathish, H., Kumar, A., and Anjali, T. (2022). Aiding the visually impaired using artificial intelligence and speech recognition technology. In 4th International Conference on Inventive Research in Computing Applications (ICIRCA): 1356-1362. IEEE.  https://doi.org/10.1109/ICIRCA54612.2022.9985659
Abdnikoyipour, E. (2011). Agent-based human-computer interaction for the blind. Master's thesis of Amirkabir University of Technology (Polytechnic). [In Persian] 
Babu, R. and Xie, I. (2017). Haze in the digital library: design issues hampering accessibility for blind users. The Electronic Library. 35 (5):1052-1065. https://doi.org/10.1108/EL-10-2016-0209
Buzzi, M., Andronico, P., and Leporini, B. (2004). Accessibility and usability of search engine interfaces: Preliminary testing. In Proc. of 8th ERCIM UI4ALL Workshop.
Byerley, S.L., Beth Chambers, M., and Thohira, M. (2007).  Accessibility of web‐based library databases: the vendors’ perspectives in 2007. Library Hi Tech. 25 (4): 509–527. https://doi.org/10.1108/07378830710840473
Byerley, S.L. and Chambers, M.B. (2001). Usability testing and students with disabilities: Achieving universal access on a library web site. ACRL Tenth National Conference. https://alair.ala.org/bitstream/handle/11213/16796/byerley.pdf?sequence=1
Chandrashekar, S. (2010).  Is hearing believing? Perception of online information credibility by screen reader users who are blind or visually impaired. A thesis submitted in conformity with the requirements for the degree of Doctor of Philosophy, Toronto, ON: University of Toronto. https://tspace.library.utoronto.ca/bitstream/1807/26157/6/Chandrashekar_Sambhavi_201011_PhD_thesis.pdf
Turner, R. (2003). Non-visual access to the digital library (NoVA): The use of the digital library interfaces by blind and visually impaired people. New Library World, 104 (7/8): 321-322. https://doi.org/10.1108/03074800310488095
Dermody, K. and Majekodunmi, N. (2011). Online databases and the research experience for university students with print disabilities. Library Hi Tech. 29 (1): 149 – 160. https://doi.org/10.1108/07378831111116976
Felix, S.M., Kumar, S., and Veeramuthu, A. (2018). A smart personal AI assistant for visually impaired people. In 2nd international conference on trends in electronics and informatics (ICOEI): 1245-1250. IEEE. https://doi.org/10.1109/ICOEI.2018.8553750
Ferworn, A., Bodner, R., and Chignell, M.H. (2002), Auditory WWW search tools. In Proceedings of Int. Conference on Auditory Display: 2-5.
Fiol-Roig, G., Arellano, D., Perales, F.J., Bassa, P., and Zanlongo, M. (2009), The intelligent butler: A virtual agent for disabled and elderly people assistance. In International symposium on distributed computing and artificial intelligence 2008 (DCAI 2008): 375-384. Springer Berlin Heidelberg. https://doi.org/10.1007/978-3-540-85863-8_44
Harum, N., MSK, N.I., Emran, N.A., Abdullah, N., Zakaria, N.A., Hamid, E., and Anawar, S. (2021). A development of multi-language interactive device using artificial intelligence technology for visual impairment person. International Journal of Interactive Mobile Technologies, 15 (19): 79-92.
King, L. and Coetzee, A. (2018). The everyday life information behaviour of visually impaired students at Stellenbosch University. Innovation: journal of appropriate librarianship and information work in Southern Africa. No 56: 140-162.
Kumar, S., Mishra, D.N., Ganie, S.M., Bharathikannan, R. وand Vijayakanthan K. (2023). Artificial Intelligence Solutions for the Visually Impaired: A Review. Handbook of Research on AI and Knowledge Engineering for Real-Time Business Intelligence: 198-207. https://doi.org/10.4018/978-1-6684-6519-6.ch013
Lazar, J., Allen, A., Kleinman, J., and Malarkey, C. (2007).  What Frustrates Screen Reader Users on the Web: A Study of 100 Blind Users. International Journal of Human-Computer Interaction. 22 (3): 247–269. https://doi.org/10.1080/10447310709336964
Leporini, B., Andronico, P., and Buzzi, M. (2004). Designing search engine user interfaces for the visually impaired. In Proceedings of the 2004 international cross-disciplinary workshop on Web accessibility (W4A): 57-66. https://doi.org/10.1145/990657.990668
Marvin, E. (2020). Digital assistant for the visually impaired. In International Conference on Artificial Intelligence in Information and Communication (ICAIIC): 723-728. IEEE. https://doi.org/10.1109/ICAIIC48513.2020.9065191
Mulliken, A. (2019). Eighteen blind library users’ experiences with library websites and search tools in US academic libraries: A qualitative study.http://dspace.fudutsinma.edu.ng/xmlui/handle/123456789/1672
Narayani, T.L., Sivapalanirajan, M., Keerthika, B., Ananthi, M., and Arunarani, M. (2021). Design of Smart Cane with integrated camera module for visually impaired people. In International Conference on Artificial Intelligence and Smart Systems (ICAIS): 999-1004. IEEE. https://doi.org/10.1109/ICAIS50930.2021.9395840
Park, M.C. and Kim, T.S. (2018). Implementation of Smart Gloves for the Blind and Visually Impaired. Journal of the Korea Society of Computer and Information. 23 (8): 101-106. https://doi.org/10.9708/jksci.2018.23.08.101
Sarmadi, A. (2016). Getting to know Daisy Player format. https://sepid.samanpl.ir/Learns/Learnsdetail/15
Sahib, N.G., Tombros, A., and Stockman, T. (2012). A comparative analysis of the information‐seeking behavior of visually impaired and sighted searchers. Journal of the American Society for Information Science and Technology. 63 (2): 377-391. https://doi.org/10.1002/asi.21696
Saleem, Y., Ahmad, A., Naeem, O.B., Hayat, M.F., Afzaal, S.M., Amjad, M., and Saleem, M. (2014). Windows Interface for Disabled Person. Pakistan Journal of Science. 66 (1): 29-35.        https://www.proquest.com/docview/1564400169?sourcetype=Scholarly%20Journals
Shera, A., Iqbal, M.W., Shahzad, S.K., Gul, M., Mian, N.A., Naqvi, M.R., and Khan, B.A. (2021). Blind and visually impaired user interface to solve accessibility problems. Intelligent Automation and Soft Computing. 30(1): 285-301. https://doi.org/10.32604/iasc.2021.018009
Shilkrot, R., Huber, J., Liu, C., Maes, P., and Nanayakkara, S.C. (2014). FingerReader: a wearable device to support text reading on the go. In CHI'14 Extended Abstracts on Human Factors in Computing Systems: 2359-2364. https://doi.org/10.1145/2559206.2581220
Shimomura, Y., Hvannberg, E.T., and Hafsteinsson, H. (2010). Accessibility of audio and tactile interfaces for young blind people performing everyday tasks. Universal Access in the Information Society. 9 (4): 297-310. https://doi.org/10.1007/s10209-009-0183-y
Statistical Yearbook 2020. (2021). Compiled by Amir Mehrabi, Hamid Qolipour, and Parisa Tale. Tehran: Publication of the Welfare Organization. [In Persian] 
Tomlinson, S.M. (2016). Perceptions of accessibility and usability by blind or visually impaired persons: a pilot study. Proceedings of the Association for Information Science and Technology, 53 (1): 1-4. https://doi.org/10.1002/pra2.2016.14505301120 
Wahabi, F., asadi, S., and Ganjehtar, S. (2021). Neural Network Modelling of the Information Behavior of Database Users Based on their Previous Interactions with the Search Results. Iranian Journal of Information Processing and Management. 37 (1): 255-276. https://doi.org/10.52547/jipm.37.1.255 [In Persian] 
Walle, H., De Runz, C., Serres, B., and VenTurini, G. (2022). A survey on recent advances in AI and vision-based methods for helping and guiding visually impaired people. Applied Sciences. 12(5): 2308. https://doi.org/10.3390/app12052308
World Health Organization. (2021). Blindness and vision impairment. https://www.who.int/news-room/fact-sheets/detail/blindness-and-visual-impairment
Xie, I., Babu, R., Jeong, W., Joo, S., and Fuller, P. (2014). Blind users searching digital libraries: Types of Help-seeking Situations at the Cognitive Level. IConference 2014 Proceedings. https://doi.org/10.9776/14272
Yesilada, Y., Stevens, R., Harper, S., and Goble, C. (2007). Evaluating DANTE: semantic transcoding for visually disabled users. ACM Trans. Computer-Human Interact. 14 (14). https://doi.org/10.1145/1279700.1279704
Yoon, K., Dols, R., Hulscher, L., and Newberry, T. (2016). An exploratory study of library website accessibility for visually impaired users. Library & Information Science Research. 38 (3): 250-258. https://doi.org/10.1016/j.lisr.2016.08.006