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首页> 外文期刊>IEEE Transactions on Plasma Science >Design of a Pulsed Alternator to Drive a Single-Stage Induction Coilgun
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Design of a Pulsed Alternator to Drive a Single-Stage Induction Coilgun

机译:脉冲交流发电机的设计,以驱动单级感应线圈

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Pulsed alternators (PAs) are ac generators which are specifically designed to generate pulsed currents of very high magnitudes for a given duration. An induction coilgun is being designed and developed in the author's laboratory to propel projectiles of different sizes. The scope of this work is to design and develop a PA for the same. A single-phase, iron core, slotted stator, cylindrical rotor, and no-compensation topology of the PA has been selected for this application. For the parametric analysis, a coupled circuit model of the PA has been used by considering the correction factors which include the skin effect and the magnetic saturation of the iron parts of the alternator. Eddy currents induced in the rotor core have been modeled as one circuit on each axis. A number of designs have been modeled and simulated and their performances have been analyzed for different design variables of the PA. Peak current, projectile velocity, and the temperature rise of the coil per current pulse are the output parameters which have been analyzed for every design. From the parametric analysis, PA with a particular configuration has been selected which results in the desirable performance of the PA-coilgun system. The design has been validated by modeling the same in finite element method (FEM)-based software. The performance of the PA driving the coilgun has been compared with that driven by the capacitor bank, and the feasibility of the multistage operation using the PA has been studied.
机译:脉冲交流发电机(PAS)是AC发电机,其专门设计成在给定持续时间内产生非常高幅度的脉冲电流。在作者的实验室中设计和开发了一种感应线巾,以推动不同尺寸的弹丸。这项工作的范围是设计和开发相同的PA。为此应用选择了单相,铁芯,开槽定子,圆柱转子和无补偿拓扑。对于参数分析,通过考虑包括皮肤效应和交流发电机的铁部分的磁饱和来的校正因子来使用PA的耦合电路模型。在转子芯中引起的涡流已经在每个轴上建模为一个电路。已经建模和模拟了许多设计,并且对PA的不同设计变量进行了分析了它们的性能。峰值电流,弹丸速度和线圈的温度升高为每次电流脉冲的输出参数,这些参数已经分析了每个设计。从参数分析中,已经选择了具有特定配置的PA,这导致PA-CoilGun系统的理想性能。通过在有限元方法(FEM)的软件中建模相同验证了设计。 PA驱动线圈的性能与电容器组驱动的比较,并研究了使用PA的多级操作的可行性。

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