arXiv:2507.23190cs.HCcs.AI2025-07被引 7

用AI为残障人士定制化扫描建筑无障碍问题

Accessibility Scout: Personalized Accessibility Scans of Built Environments

  • 基于大模型分析环境照片,动态学习用户需求
  • 10名不同行动能力用户测试,结果超越传统标准
  • 适合需要个性化无障碍评估的残障人士及设计者

评估陌生建筑环境的无障碍性对残障人士至关重要。手动评估耗时且不可扩展,而现有自动机器学习方法常忽略个体差异。借助大语言模型(LLM)的新进展,我们提出Accessibility Scout——一个基于LLM的无障碍扫描系统,能从建筑环境照片中识别无障碍问题。通过人机协同评估,系统随使用不断优化,根据用户的行动能力、偏好和特定关注点提供个性化扫描。我们开展三项研究:6名参与者的形式化设计研究,500张环境图像的技术评估,以及10名不同行动能力用户的用户研究。技术与用户研究结果表明,Accessibility Scout生成的个性化评估超越了传统的ADA标准。最后,我们讨论了研究意义与未来构建更可扩展、个性化的物理世界无障碍评估的方向。

原文摘要 · Abstract (English)

Assessing the accessibility of unfamiliar built environments is critical for people with disabilities. However, manual assessments, performed by users or their personal health professionals, are laborious and unscalable, while automatic machine learning methods often neglect an individual user's unique needs. Recent advances in Large Language Models (LLMs) enable novel approaches to this problem, balancing personalization with scalability to enable more adaptive and context-aware assessments of accessibility. We present Accessibility Scout, an LLM-based accessibility scanning system that identifies accessibility concerns from photos of built environments. With use, Accessibility Scout becomes an increasingly capable "accessibility scout", tailoring accessibility scans to an individual's mobility level, preferences, and specific environmental interests through collaborative Human-AI assessments. We present findings from three studies: a formative study with six participants to inform the design of Accessibility Scout, a technical evaluation of 500 images of built environments, and a user study with 10 participants of varying mobility. Results from our technical evaluation and user study show that Accessibility Scout can generate personalized accessibility scans that extend beyond traditional ADA considerations. Finally, we conclude with a discussion on the implications of our work and future steps for building more scalable and personalized accessibility assessments of the physical world.

无障碍大模型个性化

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