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System synthesis of a testbench for testing modules and control systems of lower-limb prostheses

机译:测试平台的系统综合,用于测试下肢假体的模块和控制系统

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Rehabilitation of disabled persons who have lost their lower limbs due to various reasons and the ensuring to them the opportunity an active lifestyle is an important social task. It can be solved by the widespread introduction in the rehabilitation practice a low-cost intelligent prostheses, the functionality of which depends not only on the design type, but also, not least, from the realized control system. As a rule, in modern control systems real-time is used the information about the state of the environment, intentions and current amputee status, as some human-machine system. In this regard, the synthesis of artificial limbs and their control systems it is advisable to carry out from the viewpoint of systems theory. The functionality of control systems and the main modules of prostheses that can theoretically perform their functions requires experimental verification. In this work presented a testbench by means of which can solve a wide range of experimental tasks. The testbench primarily intended for testing of artificial feet and represent a mechatronic device based on Stewart platform with electromechanical drives. One of links of testing module is mounted on the upper fixed platform (rigidly or hingedly), and the second link is supported or fixed on the movable platform. The mobile platform can perform many controlled movements, thus simulating the operation of tested prosthesis module or its control system.
机译:由于各种原因失去下肢的残疾人的康复,并确保他们有机会过上积极的生活方式是一项重要的社会任务。可以通过在康复实践中广泛使用低成本的智能假肢来解决该问题,其功能不仅取决于设计类型,而且还取决于实现的控制系统。通常,在现代控制系统中,实时地将有关环境状态,意图和当前被截肢者状态的信息用作某些人机系统。在这方面,从系统理论的观点出发,建议进行人工肢体及其控制系统的综合。理论上可以执行其功能的控制系统和假体主要模块的功能需要进行实验验证。在这项工作中提出了一个测试平台,通过它可以解决各种各样的实验任务。该测试台主要用于测试人造足,是基于Stewart平台并带有机电驱动器的机电设备。测试模块的一个链节(刚性或铰接)安装在上固定平台上,第二个链节支撑或固定在活动平台上。该移动平台可以执行许多受控的运动,从而模拟被测试的假体模块或其控制系统的操作。

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