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A Railgun Test Bench and Standardized Methodology for Muzzle Voltage Noise Analysis

机译:用于枪口电压噪声分析的Railgun测试台和标准化方法

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摘要

This paper presents the design, development, and initial testing results of a small-bore railgun and test bench for the study of muzzle voltage traces. An analysis of the noise observed on voltage traces taken from the muzzle during motional and locked-armature operations is presented and discussed. The average velocities for a 3.38-g projectile were 50 m/s over a series of 21 tests. The railgun is powered by a sequentially fired pulse-forming network consisting of six electrolytic capacitor banks. Typical current and voltage characteristics are approximately 20-kA peak current at 275 V for a 6-ms pulse train length. Noise root-mean-square voltage and noise margins are extracted from the muzzle voltage waveforms and discussed. This investigation also develops a quantitative method to analyze muzzle voltage noise, which can be applied to any electromagnetic launcher. The technique reveals a new and interesting result that shows noise levels were greatest during early pulses of the firing sequence and generally decreased with subsequent pulses. This demonstrates that the technique has the potential to provide insight into the nature of the armature–rail sliding contact.
机译:本文介绍了用于研究枪口电压轨迹的小口径轨道炮和试验台的设计,开发和初步测试结果。提出并讨论了在运动和锁定电枢操作过程中从枪口获取的电压迹线上观察到的噪声的分析。在一系列21项测试中,3.38克弹丸的平均速度为50 m / s。轨道炮由顺序触发的脉冲形成网络供电,该网络由六个电解电容器组组成。典型的电流和电压特性是在6ms脉冲串长度下275V时约20kA峰值电流。从枪口电压波形中提取噪声均方根电压和噪声容限并进行讨论。该研究还开发了一种定量方法来分析枪口电压噪声,该方法可应用于任何电磁发射器。该技术揭示了一个有趣的新结果,该结果表明,噪声水平在点火序列的早期脉冲期间最大,并随随后的脉冲而降低。这表明该技术有可能提供对电枢-轨道滑动接触的本质的了解。

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