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期刊号: CN32-1800/TM| ISSN1007-3175

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基于多算法模型的叉指电极式传感器参数优化设计

来源:电工电气发布时间:2025-06-27 14:27 浏览次数:2

基于多算法模型的叉指电极式传感器参数优化设计

彭赛,谭爱国,王海文,廖红华,钟建伟,杨永超,田相鹏
(湖北民族大学 智能科学与工程学院,湖北 恩施 445000)
 
     摘 要:为实现对叉指电极式传感器响应目标的全局优化,提出了一种基于改进鹅优化- 最小二乘支持向量机(IGOOSE-LSSVM)的近似模型与非支配排序鲸鱼优化算法(NSWOA)的联合优化方法。分析了IGOOSE-LSSVM 近似模型和 NSWOA 算法的建立原理,搭建了叉指电极有限元模型,并选择好所需优化的结构参数;在电极仿真模型的基础上通过拉丁超立方样本采样构建了近似模型的样本数据集,将样本数据输入到 IGOOSE-LSSVM 模型中进行训练以此得到所需的近似模型;联合近似模型与 NSWOA 算法,以叉指电极输出电容最大、电极尺寸最小为优化目标,求出了叉指电极的最佳参数优化组合,并对所得结果进行了对比验证。实验结果显示:所建立的近似模型能较好地拟合出电极输出电容与电极尺寸,其相关性分别达到 0.995 1 与 0.995 6 ;联合优化方法相比正交试验其输出电容提高35.61%,输出电容响应灵敏度提高50.96%,电极尺寸减小43%。
    关键词: 叉指电极;传感器;IGOOSE-LSSVM 近似模型;非支配排序鲸鱼优化算法;参数优化
    中图分类号:TP212     文献标识码:A     文章编号:1007-3175(2025)06-0001-07
 
Parameter Optimization Design of Interdigital Electrode
Sensor Based on Multi-Algorithm Model
 
PENG Sai, TAN Ai-guo, WANG Hai-wen, LIAO Hong-hua, ZHONG Jian-wei, YANG Yong-chao, TIAN Xiang-peng
(College of Intelligent Systems Science and Engineering, Hubei Minzu University, Enshi 445000, China)
 
    Abstract: In order to realize the global optimization of the response target of the interdigital electrode sensor, a joint optimization method based on the approximate model of the improved goose optimization-least squares support vector machine(IGOOSE-LSSVM) and the non-dominated sorting whale optimization algorithm(NSWOA) is proposed. Firstly, the establishment principles of the IGOOSE-LSSVM approximation model and the NSWOA algorithm were analyzed, the finite element model of the interdigital electrode was constructed, and the structural parameters required for optimization were selected. Then, based on the electrode simulation model, the sample data set of the approximation model was constructed by Latin hypercubic sample sampling, and the sample data was inputted into the IGOOSE-LSSVM model for training to obtain the desired approximation model. Finally, the joint approximation model and the NSWOA algorithm are used to find the optimal parameter optimization combinations of the interdigital electrode with the optimization objectives of maximum output capacitance of the interdigital electrode and minimum size of the electrodes, and the results obtained are compared and verified. Experimental results demonstrate that the established approximation model effectively fits the electrode output capacitance and dimensional parameters, achieving correlation coefficients of 0.995 1 and 0.995 6 respectively. Compared to orthogonal experiments, the proposed hybrid optimization method achieves a 35.61% improvement in output capacitance, a 50.96% enhancement in capacitance response sensitivity, and a 43% reduction in electrode dimensions.
    Key words: interdigitated electrode; sensor; IGOOSE-LSSVM approximate model; non-dominated sorting whale optimization algorithm;parameter optimization
 
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