首页> 外文期刊>IEEE Transactions on Plasma Science >Cross-correlation-based method for determining the position and velocity of a railgun plasma armature from B-dot probe signals
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Cross-correlation-based method for determining the position and velocity of a railgun plasma armature from B-dot probe signals

机译:基于互相关的B点探针信号确定枪炮等离子体电枢位置和速度的方法

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摘要

A method of determining the position and velocity of a plasma armature from B-dot probe signals is presented. It utilizes the physical processes governing the plasma armature current density to model the leading edge of the armature as a unit step function. This model of the current profile is convolved with the impulse response of the probe and compared with B-dot probe data via a local-area cross-correlation (LACC) coefficient. Two-parameter iteration determines the time of passage and velocity of the leading edge of the armature as the values for which the correlation is maximized. Results obtained using this technique indicate that significant improvement in accuracy for time of passage estimates can be obtained over previous ad hoc methods. Velocity estimates from individual B-dot probe signals can also be obtained.
机译:提出了一种根据B点探针信号确定等离子体电枢的位置和速度的方法。它利用控制等离子体电枢电流密度的物理过程将电枢的前沿建模为单位阶跃函数。该电流分布图模型与探头的脉冲响应卷积在一起,并通过局部互相关(LACC)系数与B点探头数据进行比较。两参数迭代将通过时间和电枢前沿的速度确定为相关性最大化的值。使用该技术获得的结果表明,与以前的临时方法相比,可以大大提高通过时间估计的准确性。还可以从各个B点探针信号获得速度估算值。

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