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一种基于青蒿素优化算法的功能性电刺激预测增强型PID-F控制策略。

A predictive enhanced PID-F control strategy for functional electrical stimulation based on the artemisinin optimization algorithm.

作者信息

Can Özay, Şahin Erdinç

机构信息

Department of Electronics and Automation, Recep Tayyip Erdoğan University, Rize, Turkey.

Department of Computer Engineering, Giresun University, Giresun, Turkey.

出版信息

Sci Rep. 2025 Aug 30;15(1):32007. doi: 10.1038/s41598-025-17589-8.

Abstract

Functional electrical stimulation (FES) has demonstrated efficacy in enhancing comfort and mobility for individuals with paralysis, neurological diseases, and compromised muscle function. It facilitates motions that would otherwise be challenging or unattainable for these persons. Achieving optimal performance from FES systems necessitates the formulation of a strong and efficient control approach. To address this need, this paper proposes a novel controller called predictive proportional-integral-filtered derivative (PPID-F), which incorporates a predictive term into a filtered PID controller. The controller parameters are ideally optimized utilizing a recently devised metaheuristic method known as the artemisinin optimizer (AO). In contrast to traditional approaches in the literature, AO is employed to minimize a specifically designed objective function (OF) that integrates the integral of time-weighted absolute error (ITAE) criteria and the system's peak response (y). Comparative simulation results show that the proposed AO: PPID-F controller achieves the lowest objective function (OF) value among all evaluated methods. Specifically, it reduces the OF value from 0.4862 (AO: PID-F) to 0.2519, resulting in a 48.19% improvement. Compared to other benchmark controllers, the improvement ranges between approximately 48 and 68%. The effectiveness of the proposed controller is subsequently evaluated against six established approaches reported in the literature. The results demonstrate that the AO: PPID-F controller significantly enhances time-domain performance while preserving satisfactory frequency-domain features in comparison to alternative controller architectures developed for the FES system.

摘要

功能性电刺激(FES)已证明在提高瘫痪、患有神经疾病和肌肉功能受损个体的舒适度和活动能力方面具有疗效。它有助于这些人进行原本具有挑战性或无法实现的动作。要使FES系统达到最佳性能,需要制定一种强大而有效的控制方法。为满足这一需求,本文提出了一种名为预测比例积分滤波微分(PPID-F)的新型控制器,该控制器将一个预测项纳入到一个滤波PID控制器中。控制器参数理想情况下利用最近设计的一种元启发式方法——青蒿素优化器(AO)进行优化。与文献中的传统方法相比,AO用于最小化一个专门设计的目标函数(OF),该目标函数整合了时间加权绝对误差积分(ITAE)准则和系统的峰值响应(y)。对比仿真结果表明,所提出的AO:PPID-F控制器在所有评估方法中实现了最低的目标函数(OF)值。具体而言,它将OF值从0.4862(AO:PID-F)降低到0.2519,提高了48.19%。与其他基准控制器相比,改进幅度在大约48%至68%之间。随后,将所提出的控制器与文献中报道的六种既定方法进行有效性评估。结果表明,与为FES系统开发的其他控制器架构相比,AO:PPID-F控制器在保持令人满意的频域特性的同时,显著提高了时域性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d715/12398566/5a76a64513d1/41598_2025_17589_Fig1_HTML.jpg

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