Visual Information Processing Labratory, Department of Advanced Technology Fusion, Konkuk, University, Seoul, South Korea.
J Neuroeng Rehabil. 2009 Aug 6;6:33. doi: 10.1186/1743-0003-6-33.
Due to the shift of the age structure in today's populations, the necessities for developing the devices or technologies to support them have been increasing. Traditionally, the wheelchair, including powered and manual ones, is the most popular and important rehabilitation/assistive device for the disabled and the elderly. However, it is still highly restricted especially for severely disabled. As a solution to this, the Intelligent Wheelchairs (IWs) have received considerable attention as mobility aids. The purpose of this work is to develop the IW interface for providing more convenient and efficient interface to the people the disability in their limbs.
This paper proposes an intelligent wheelchair (IW) control system for the people with various disabilities. To facilitate a wide variety of user abilities, the proposed system involves the use of face-inclination and mouth-shape information, where the direction of an IW is determined by the inclination of the user's face, while proceeding and stopping are determined by the shapes of the user's mouth. Our system is composed of electric powered wheelchair, data acquisition board, ultrasonic/infra-red sensors, a PC camera, and vision system. Then the vision system to analyze user's gestures is performed by three stages: detector, recognizer, and converter. In the detector, the facial region of the intended user is first obtained using Adaboost, thereafter the mouth region is detected based on edge information. The extracted features are sent to the recognizer, which recognizes the face inclination and mouth shape using statistical analysis and K-means clustering, respectively. These recognition results are then delivered to the converter to control the wheelchair.
RESULT & CONCLUSION: The advantages of the proposed system include 1) accurate recognition of user's intention with minimal user motion and 2) robustness to a cluttered background and the time-varying illumination. To prove these advantages, the proposed system was tested with 34 users in indoor and outdoor environments and the results were compared with those of other systems, then the results showed that the proposed system has superior performance to other systems in terms of speed and accuracy. Therefore, it is proved that proposed system provided a friendly and convenient interface to the severely disabled people.
由于当今人口结构的转变,开发支持他们的设备或技术的必要性不断增加。传统上,轮椅,包括电动和手动轮椅,是残疾人和老年人最受欢迎和最重要的康复/辅助设备。然而,它仍然受到高度限制,特别是对于严重残疾的人。作为对此的解决方案,智能轮椅 (IW) 作为移动辅助工具受到了相当多的关注。本文的目的是为肢体残疾人士开发 IW 接口,提供更方便、高效的接口。
本文提出了一种用于各种残疾人士的智能轮椅 (IW) 控制系统。为了方便各种用户能力,所提出的系统涉及使用面部倾斜和口型信息,其中 IW 的方向由用户面部的倾斜度确定,而前进和停止由用户口型的形状确定。我们的系统由电动轮椅、数据采集板、超声/红外传感器、PC 摄像头和视觉系统组成。然后,通过三个阶段对面部识别系统进行分析:检测器、识别器和转换器。在检测器中,首先使用 Adaboost 获得预期用户的面部区域,然后根据边缘信息检测到嘴部区域。提取的特征被发送到识别器,识别器分别使用统计分析和 K-均值聚类来识别面部倾斜和口型。这些识别结果然后被传递到转换器以控制轮椅。
所提出系统的优点包括 1)用户运动最小,意图识别准确,2)对杂乱背景和时变光照具有鲁棒性。为了证明这些优势,在室内和室外环境中对 34 名用户进行了系统测试,并将结果与其他系统进行了比较,结果表明,在所提出的系统在速度和准确性方面优于其他系统。因此,证明了所提出的系统为严重残疾人士提供了友好和方便的接口。