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Electronic design and validation of Powered Knee Orthosis system embedded with wearable sensors

机译:嵌入式可穿戴传感器的电动膝关节矫形系统的电子设计和验证

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The development of new architectures for orthotic devices has been playing a major role in the rehabilitation of gait disorders. This paper proposes a new electronic and control architecture for a powered orthosis, particularly, a knee orthosis. The system was designed to be modular, being composed of the orthosis and biomedical wearable sensors, such as inertial measurement units, force sensitive resistors, and electromyography. For each component, robust hardware and software interfaces were designed and validated, plus two tracking control strategies, namely, position control, that imposes a trajectory based on the angle measured in the joint, and torque control to act mostly as a passive component, using the measured user-orthosis interaction torque. The whole system was validated with healthy subjects walking in level-ground on a treadmill at different speeds. The main results show that the system is functional. The interfaces created as well as the assistive control techniques were successfully validated. Moreover, the system allows an efficient inclusion of other devices, given the modularity achieved in its design.
机译:矫正器新结构的开发在步态障碍的康复中起着重要作用。本文提出了一种新的电子和控制体系结构,用于动力矫形器,尤其是膝关节矫形器。该系统设计为模块化,由矫形器和生物医学可穿戴式传感器组成,例如惯性测量单元,力敏电阻和肌电图。对于每个组件,设计并验证了健壮的硬件和软件接口,外加两种跟踪控制策略,即位置控制(基于在关节中测得的角度施加轨迹)和扭矩控制(主要用作被动组件),测得的用户矫形器互动扭矩。整个系统均经过健康受试者在跑步机上以不同速度在水平地面上行走的验证。主要结果表明该系统可以正常运行。创建的界面以及辅助控制技术均已成功验证。此外,考虑到其设计中实现的模块化,该系统还可以有效地包含其他设备。

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