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Duhem Hysteresis Modeling of Magnetic Shape Memory Alloy Actuator via Takagi-Sugeno Fuzzy Neural Network

机译:铜矿磁形记忆合金执行器经由Takagi-Sugeno模糊神经网络磁形滞后模型

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The magnetic shape memory alloy (MSMA)-based actuator is a promising candidate in the micro positioning field by virtues of its large stroke and small volume. However, the inherent hysteresis nonlinearity between the input current and the output displacement seriously limited the application of the MSMA-based actuator. In this paper, the hysteresis, which is related to the input frequency and working condition (such as load), is analyzed. Then a mathematical modeling method using Duhem model (DM) and Takagi-Sugeno fuzzy neural network (TSFNN) is introduced to describe the hysteresis behavior. The mathematical expression of the DM is explicit and simple; and the TSFNN, which has the advantages of both fuzzy system and NN structure, is used to identify the DM parameter. Hence, the proposed TSFNN-DM method has the merits of self adjustment and clear expression. To certify the validity of the developed model, comparative experiments with the modeling methods in other literatures are executed. Experimental results confirm that the TSFNN-DM has the better modeling performance to depict the hysteresis under the different input frequencies and loads than other modeling methods in previous studies.
机译:基于其大冲程和小体积的微定位场中的磁性形状记忆合金(MSMA)的致动器是微定位领域的有希望的候选者。然而,输入电流和输出位移之间的固有滞后非线性严重限制了基于MSMA的执行器的应用。在本文中,分析了与输入频率和工作条件(例如负载)相关的滞后。然后,引入了使用DUMEM模型(DM)和Takagi-Sugeno模糊神经网络(TSFNN)的数学建模方法来描述滞后行为。 DM的数学表达明确且简单;并且具有模糊系统和NN结构的优点的TSFNN用于识别DM参数。因此,所提出的TSFNN-DM方法具有自我调整和清晰表达的优点。为了认证开发模型的有效性,执行了其他文献中的建模方法的比较实验。实验结果证实,TSFNN-DM具有更好的建模性能,可描绘不同输入频率下的滞后和比以前研究中的其他建模方法的负载。

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