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Control of Operational Condition of Electromagnetic Devices of Automation Systems

机译:自动化系统电磁设备的运行条件控制

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The authors propose a new method of function diagnostics of electromagnetic devices (EMD)of automation systems. They have developed a flowchart of an implementation option with a simple design. A new method of EMD diagnostics is based on eddy currents. As the paper proves, an initial EMD design can be used as an attachable eddy-current converter with one winding that contemporary uses two EMD modes: operational one providing coil supply with low-frequency operating voltage and that of eddy-current control method involving coil supply with high frequency (about 500÷10,000 Hz)and about 1÷10 V low voltage. The required level of decoupling between operating and measuring AC voltage supplies is provided by the proposed design. A movable EMD armature is proposed to be used as a monitored unit (MU). It was shown that measuring data provide continuous control of not only the gap between movable EMD elements during operation, but also many other physical parameters, e.g. surface condition, MU defects, material structure, temperature, mechanical stresses etc. It enables on-line non-destructive EMD control with AC and DC operating voltage supplies.
机译:作者提出了一种自动化系统电磁设备(EMD)功能诊断的新方法。他们开发了具有简单设计的实现选项的流程图。 EMD诊断的新方法是基于涡流的。正如本文所证明的那样,最初的EMD设计可用作具有一个绕组的可连接涡流转换器,现代人使用两种EMD模式:工作模式为线圈提供低频工作电压,而涡流控制方法涉及线圈提供高频(约500÷10,000 Hz)和约1÷10 V低压。提议的设计提供了在操作和测量交流电压电源之间所需的去耦水平。提议将可移动EMD电枢用作监视单元(MU)。结果表明,测量数据不仅可以连续控制操作过程中可移动EMD元件之间的间隙,还可以连续控制许多其他物理参数,例如:表面条件,MU缺陷,材料结构,温度,机械应力等。它可以通过交流和直流工作电压电源进行在线无损EMD控制。

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