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Analytical Performance Prediction of an Electromagnetic Launcher and Its Validation by Numerical Analyses and Experiments

机译:用数值分析和实验的电磁发射器的分析性能预测及其验证

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摘要

An electromagnetic launcher (EML) is used to generate high launching velocities. The basic governing equation of the propulsion force of an EML is that the propulsion force is directly proportional to current and inductance gradient. L ′ is the inductance gradient that refers to the increase or decrease in the inductance with the length of rails. The inductance gradient is easily calculated because it is a function of the rail shape and frequency. However, current ( I ) flowing in an EML is calculated by the series resistor, inductor, and capacitor (RLC) equation of the equivalent circuit. Here, L is not constant and increases as the projectile muzzles. Owing to the increase in inductance, the current ( I ) and voltage ( V ) vary depending on the projectile position. Therefore, inductance, current, and voltage should be exactly obtained to calculate the exact current at a specific time. This study deals with analytical performance prediction using the relation EML propulsion force with real-time current, which is based on an increase in resistance and inductance at a specific time. To validate this approach, the results of the current waves are compared via numerical analyses and experiments. Using this prediction method, it is possible to determine and optimize the rail shape and length from the capacitor bank and vice versa.
机译:电磁启动器(EML)用于产生高发射速度。 EML的推进力的基本控制方程是推进力与电流和电感梯度成正比。 L'是指具有轨道长度的电感的增加或减少的电感梯度。电感梯度易于计算,因为它是轨道形状和频率的函数。然而,在EML中流动的电流(i)由等效电路的串联电阻器,电感器和电容器(RLC)方程来计算。这里,L不是恒定的并且随着射弹枪口而增加。由于电感的增加,电流(i)和电压(v)根据射弹位置而变化。因此,应准确地获得电感,电流和电压以在特定时间计算精确的电流。本研究涉及使用具有实时电流的关系EML推进力的分析性能预测,这是基于特定时间的电阻和电感的增加。为了验证这种方法,通过数值分析和实验比较当前波的结果。使用该预测方法,可以从电容器组确定和优化轨道形状和长度,反之亦然。

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