Fault Analysis of Aging McKibben Pneumatic Artificial Muscle in Terms of its Model Parameters

T. Ishikawa, K. Kogiso, K. Hamamoto
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Abstract

The study analyzes a fault of McKibben Pneumatic Artificial Muscles (PAMs) focusing on unknown parameters used in nonlinear models of the PAMs. In the analysis, a change in dynamics, such as the steady-state responses to increasing the number of contraction movements, was measured through experiments and was subsequently associated with a change in model parameters. Subsequently, the fault state, which involves making a hole in the rubber tube of the PAM, and the normal state were classified by using a support vector machine (SVM) based on the change in model parameters. Furthermore, a few model parameters that can characterize the state of the PAM were extracted in terms of generalization performance. The results can be applied to other systems, such as hydraulic systems of a construction machine, and used to improve control performance by designing control systems to alleviate the influence of changing dynamics.
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老化McKibben气动人工肌肉模型参数的故障分析
针对McKibben气动人工肌肉(PAMs)的非线性模型中存在的未知参数问题,对其故障进行了分析。在分析中,动力学的变化,如增加收缩运动数量的稳态响应,是通过实验测量的,随后与模型参数的变化相关联。随后,基于模型参数的变化,利用支持向量机(SVM)对PAM的故障状态(在胶管上打孔)和正常状态进行分类。在此基础上,从泛化性能的角度提取了一些表征PAM状态的模型参数。研究结果可以应用于其他系统,如工程机械的液压系统,并用于通过设计控制系统来减轻动态变化的影响来提高控制性能。
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