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Intelligent Wheelchair and Virtual Training by LabVIEW

机译:LabVIEW的智能轮椅和虚拟培训

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The following paper describes the implementation of three different controllers for a wheelchair. It was built for improving people's life that could have disabilities associated with functions regarding muscle strength, power of muscle of all limbs, tone of muscle of all limbs and endurance of all muscles of the body. Using three programmed methods that allow the user to have full control over the wheelchair. By acquiring voltage signals generated in eye's movements and using Neuro-Fuzzy Networks for differentiating each one, the wheelchair is able of being controlled by eye's movements. Figuring out about different kinds of user's needs and environments, the wheelchair includes voice control in spaces where noise levels are less than 40dB. The voice commands are detected using the Speech Recognition software which is a default program installed on Microsoft Windows operative system. The eye and voice controls were designed using LabVIEW and the intelligent control toolkit (ICTL). There were developed virtual simulators on C# code that enable the patient to have a previous training for having a better wheelchair control and performance. The system was tested on a person with cerebral palsy.
机译:以下文件描述了轮椅的三种不同控制器的实现。它是为改善人们的生活而设计的,它可能具有与以下各项有关的功能障碍:肌肉力量,四肢的肌肉力量,四肢的肌肉语气和身体所有肌肉的耐力。使用三种编程方法,使用户可以完全控制轮椅。通过获取在眼睛运动中产生的电压信号并使用Neuro-Fuzzy网络区分每个人,轮椅可以通过眼睛的运动进行控制。考虑到不同类型的用户需求和环境,轮椅在噪音水平小于40dB的空间中包括语音控制。使用语音识别软件检测语音命令,该软件是安装在Microsoft Windows操作系统上的默认程序。眼睛和声音控件是使用LabVIEW和智能控制工具包(ICTL)设计的。已经开发出了基于C#代码的虚拟模拟器,使患者能够接受先前的培训,以获得更好的轮椅控制和性能。该系统在脑瘫患者身上进行了测试。

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