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New concept, implementation and analysis of the multicell piezoelectric motor for the control of the car seat position

机译:用于控制汽车座椅位置的多单元压电马达的新概念,实施和分析

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摘要

The research works in the frame of the dissertation have been carried out with the cooperation between the University INP - ENSEEIHT - LAPLACE (Laboratory on Plasma and Conversion of Energy), Toulouse, France, and the Gdańsk University of Technology, Faculty of Electrical and Control Engineering, Research Unit Power Electronics and Electrical Machines, Gdańsk, Poland. The main scope of the dissertation was following: development a novel concept, implementation and analysis of the multicell piezoelectric motor (MPM) for the control of the car seat position. The new concept of the MPM is based on a combined topology using the working principles of the traveling wave motor/actuator (known as the Shinsei motor), and the electromechanical structure of the rotating-mode motor/actuator. The electromechanical structure of each rotating-mode motor has been considered as an independent one – referred to as a "single cell". The application of the novel MPM for the control of the car seat position will reduce the number of gears due to its direct coupling with the driving/movement shaft of the seat positioning system. The achieved effects of a such integrated structure will be following: a higher efficiency, a lower noise of performance, a low cost of manufacturing, and in general a lower pollution of the environment. The preliminary dimensions and parameters of the prototype MPM have been verified using its developed analytical (geometrical) model and numerical methods (FEM). The prototype MPM has been manufactured. Finally, the laboratory measurements of the MPM prototype has been carried out.
机译:论文框架内的研究工作是在法国图卢兹的INP-ENSEEIHT-LAPLACE大学(等离子体与能量转换实验室)与格但斯克工业大学电气与控制学院的合作下进行的波兰格但斯克电力电子和电机研究与工程系。论文的主要范围如下:开发一种新颖的概念,用于控制汽车座椅位置的多单元压电马达(MPM)的实现和分析。 MPM的新概念基于使用行波电机/执行器(称为Shinsei电机)的工作原理以及旋转模式电机/执行器的机电结构的组合拓扑。每个旋转模式电动机的机电结构都被认为是独立的-称为“单电池”。由于新颖的MPM与座椅定位系统的驱动/运动轴直接耦合,因此将其应用于控制汽车座椅位置将减少齿轮的数量。这样的集成结构所实现的效果将是:更高的效率,更低的性能噪声,更低的制造成本以及通常更低的环境污染。 MPM原型的初步尺寸和参数已使用其开发的分析(几何)模型和数值方法(FEM)进行了验证。 MPM原型已经制造出来。最后,已经对MPM原型进行了实验室测量。

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    Ryndzionek Roland;

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  • 年度 2015
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