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A multi-purpose control and power electronic architecture for active magnetic actuators

机译:有源电磁执行器的多功能控制和电力电子架构

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摘要

This paper shows the results related with the design and implementation of a multi-purpose electronic architecture used to drive magnetic actuators by means of a three-phase independent-legs module in place of the commonly used H-bridge modules. The typical application is the magnetic actuators drive used in active magnetic bearings. The architecture is composed of a control unit with a floating point Digital Signal Processor (DSP), a power board with six independent phase legs and a carrier board to interconnect them. When more than one module is required by the application, the communication between them is guaranteed by means of CAN bus interconnection. The proposed system allows to drive two pairs of opposite electromagnets, such as those typically used to control active magnetic bearings. The study is motivated by the opportunity of reducing the amount of power and control electronic components resulting in a more straightforward, efficient and cost reduction design
机译:本文显示了与多功能电子体系结构的设计和实现相关的结果,该体系结构通过三相独立支路模块代替常用的H桥模块来驱动磁致动器。典型的应用是有源电磁轴承中使用的磁致动器驱动器。该架构由带有浮点数字信号处理器(DSP)的控制单元,具有六个独立相脚的电源板和用于将它们互连的载板组成。如果应用程序需要多个模块,则可以通过CAN总线互连来保证模块之间的通信。所提出的系统允许驱动两对相反的电磁体,例如通常用于控制主动磁性轴承的电磁体。这项研究的动机是减少电源和控制电子组件的数量,从而实现更直接,更有效和成本更低的设计

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