Comparison of PID and fuzzy logic to control the motions of robotic prosthetic limbs

Author:

Widhiada I W,Budiarsa I N,Widiyarta I M,Coglitore T

Abstract

Abstract Prosthetic limbs are one of the tools that can be used for people with lower limb disabilities. The bionic leg is one of the breakthroughs in which its movements can be regulated by the implementation of a control system on the microcontroller. Testing is done by interfacing with Matlab / Simulink on the prototype using the PID control system and the Fuzzy Logic control system with a time of 10s at a reference angle of 90°. The PID control system design is done by auto-tuning to get the required parameters, kp, ki, and kd while the Fuzzy Logic control system by determining the input and output parameters and its rules. The PID parameters obtained were 2 KP, 18 KI, and 0.5 KD while the Fuzzy Logic is the reference signal input and voltage of the DC motor as the output. The motion data obtained from the transient response is the maximum overshoot, percentage error, and settling time from both of the control systems, as for the PID 6.90%, 3.69%, and 0.877s respectively and 3.31%, 3.46%, and 0.610s respectively for the Fuzzy Logic control system. The prototype performance with the Fuzzy Logic control system is better than using the PID control system.

Publisher

IOP Publishing

Subject

General Medicine

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Predicting triplanar and bidirectional movements for a transtibial prosthesis for rehabilitation using intelligent neural networks;Neural Computing and Applications;2024-01-18

2. Feedback Linearization Control of Lower Limb Exoskeleton Robot for Rehabilitation;MATEC Web of Conferences;2023

3. Techniques and Control Systems in Upper-Limb Bionic Prostheses: A Technological Review;2022 International Conference on Smart Systems and Power Management (IC2SPM);2022-11-10

4. Performance analysis of artificial leg robot movement with PID control;2021 International Conference on Smart-Green Technology in Electrical and Information Systems (ICSGTEIS);2021-10-28

5. Application of functional modelling to solve driver reliability tasks;PROCEEDINGS OF THE SCIENTIFIC CONFERENCE ON RAILWAY TRANSPORT AND ENGINEERING (RTE 2021);2021

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