AUTOMATED WHEELCHAIR FOR DIFFERENTLY ABLED PERSON WITH FALL DETECTION AND MANEUVERABILITY

S. Tshering, Deoraj Biswa, Dhendup Tshering, S. Rinchen, Sujata Rai, Rinchen Bidha, Karma Y Lhayang
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Abstract

While many people with disabilities can benefit from power wheelchairs, some people with disabilities find it difficult or impossible to use a basic power wheelchair. To serve this group, several researchers have developed "smart wheelchairs" that use technologies originally developed for mobile robots to reduce the physical, perceptual, and cognitive skills needed to operate a motorized wheelchair. Smart Wheelchairs are mechanically controlled devices that can move on their own with the help of a user command. This reduces the user's human effort and force required to push the wheelchair wheels. It also allows visually or physically disabled people to move from one location to another. The wheelchair also has an obstacle detection system, which reduces the likelihood of a collision while traveling.
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自动轮椅,为不同残疾的人摔倒检测和操作
虽然许多残疾人可以从电动轮椅中受益,但有些残疾人发现很难或根本无法使用基本的电动轮椅。为了服务于这一群体,一些研究人员开发了“智能轮椅”,使用最初为移动机器人开发的技术来减少操作机动轮椅所需的身体、感知和认知技能。智能轮椅是一种机械控制的设备,可以在用户指令的帮助下自行移动。这减少了用户推动轮椅轮子所需的人力和力量。它还允许视力或身体残疾的人从一个地方移动到另一个地方。这款轮椅还装有障碍物探测系统,可以减少行驶中发生碰撞的可能性。
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EXAMINING THE INFLUENCE OF ON-JOB TRAINING (OJT) ON STUDENT LEARNING: A STUDY FOCUSING ON THE 6TH COHORT OF THE DIPLOMA IN MATERIALS AND PROCUREMENT MANAGEMENT PROGRAM AT JIGME NAMGYEL ENGINEERING COLLEGE IN DEWATHANG STUDY ON SPATIAL-TEMPORAL URBAN GROWTH AND LAND CONSUMPTION PATTERNS OF THIMPHU, BHUTAN USING MULTI-TEMPORAL SATELLITE IMAGES WIND POWER FORECASTING USING MACHINE LEARNING IN BHUTAN AUTOMATED WHEELCHAIR FOR DIFFERENTLY ABLED PERSON WITH FALL DETECTION AND MANEUVERABILITY FOREST FIRE SUSCEPTIBILITY MAPPING OF BHUTAN USING LOGISTIC REGRESSION AND FREQUENCY RATIO MODEL
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