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Concept Design and Experiment Study of Self-sensing Actuator Based on Magnetically Controlled Shape Memory Alloy

机译:磁控形状记忆合金自感应执行器的概念设计与实验研究

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In this paper, a self-sensing actuator (SSA) used positive characteristic and inverse characteristic of magnetically controlled shape memory alloy (MSMA) is designed. A control model of SSA based on MSMA is established, which reflects the relationships of sensor parameters, control parameters and shape changes of MSMA. While the model provides a theoretical basis for applying SSA. In addition, the control system of SSA based on MSMA is designed. The key technical problems of SSA signal processing based on MSMA are explored. Lenz effect is eliminated during the process of work. Better experimental results are achieved in the active vibration controL Research and application for SSA have some reference value.
机译:本文设计了一种利用磁控形状记忆合金(MSMA)的正特性和反特性的自感应致动器(SSA)。建立了基于MSMA的SSA控制模型,该模型反映了传感器参数,控制参数和MSMA形状变化之间的关系。该模型为应用SSA提供了理论依据。另外,设计了基于MSMA的SSA控制系统。探讨了基于MSMA的SSA信号处理的关键技术问题。在工作过程中消除了伦茨效应。在主动振动控制中取得了较好的实验结果。SSA的研究和应用具有一定的参考价值。

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