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Application and comparison of finite state control of above-knee prosthesis with pneumatic cylinder at different phases

机译:膝关节假体在不同阶段的有限状态控制的应用与比较

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In this study, performance test results of “various phases state control” of the semi active knee joint with pneumatic damper have been presented in a comparative manner. Performance tests have been conducted with natural human gait and prosthetic gait via image based motion measurement system and sensor based motion measurement system. Subjects are realized gait onto treadmill with different gait velocities as 1 km/h, 2 km/h and 3 km/h. The phase control of the prosthetic gait is performed under two phase, three phase and five phase scenarios. Under the facts drawn by these performance tests, the optimum control strategy related to phases of gait can be determined in a qualitative fashion and the response of the developed prosthesis under different gait velocities can be measured successfully. Mean absolute knee angle error results from natural gait and prosthetic gait are considered as performance criteria, derived from image based motion measurement system. It is concluded that the response time of the stepper motor causes a major limitation onto proper control over the pneumatic cylinder based prosthesis and associated conclusions are shared.
机译:在这项研究中,以比较的方式提出了半主动式膝关节气动减震器“各相状态控制”的性能测试结果。已经通过基于图像的运动测量系统和基于传感器的运动测量系统对自然的步态和假肢步态进行了性能测试。将对象以1 km / h,2 km / h和3 km / h的不同步态速度在跑步机上实现步态。假肢步态的阶段控制是在两阶段,三相和五阶段方案下执行的。根据这些性能测试得出的事实,可以定性地确定与步态阶段相关的最佳控制策略,并且可以成功地测量已开发的假体在不同步态速度下的响应。自然步态和假肢步态导致的平均绝对膝角误差被认为是性能标准,它是基于图像的运动测量系统得出的。结论是,步进电机的响应时间对基于气缸的假体的正确控制造成了很大的限制,并且相关结论也得到了分享。

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