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Embedded fuzzy logic controller for functional electrical stimulation system

机译:功能电刺激系统的嵌入式模糊逻辑控制器

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Functional electrical stimulation (FES) is one of the most common techniques used to improve motor function in individuals with paralysis. In this study, fuzzy logic controller implemented in embedded system for wearable FES was developed. The controller was designed as Single Input Single Output (SISO) and Multi Input Single Output (MISO) controllers to manage electrical stimulation for seven muscles in thigh and shank and to induce certain joint movements. The system was realized in two steps utilizing 32-bit ARM microcontrollers, STM32F429 and STM32F103C8T6, respectively. Closed-loop control was used in the system and realized using feedback from the sensors. Serial communication was utilized for data transmission between embedded system and PC/laptop as monitoring station. Experiments done to test the performance of SISO controller of knee flexion proved that the system was able to adjust burst duration and to control joint movement induced. The system designed was expected to be helpful for clinical application of motor function improvement.
机译:功能电刺激(FES)是用于改善瘫痪的个体中的运动功能的最常用技术之一。在本研究中,开发了在嵌入式系统中实现的模糊逻辑控制器。控制器被设计为单输入单输出(SISO)和多输入单输出(MISO)控制器,以管理大腿和小腿的七个肌肉的电刺激,并诱导某些关节运动。该系统分别在两个步骤中实现,分别使用32位臂微控制器,STM32F429和STM32F103C8T6。系统中使用闭环控制,并使用传感器的反馈实现。串行通信用于嵌入式系统和PC /笔记本电脑之间的数据传输作为监控站。进行测试以测试膝关节屈曲的Siso控制器的性能证明了该系统能够调整突发持续时间并控制诱导的关节运动。该系统预计有助于对电机功能改进的临床应用有所帮助。

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