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Railgun armature plasma-current density from deconvolved B-dot probe signals

机译:解卷积的B点探针信号产生的Railgun电枢等离子体电流密度

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摘要

It is shown that the spatial distribution of the moving armature current profile in an electromagnetic railgun can be recovered from the recorded signal of a B-dot probe. This approach differs from previous methods in that no a priori assumptions for the functional form of the armature current density are required. From certain simplifying assumptions, a model of the railgun circuit is developed from which the B-dot probe signal can be derived as a convolution of the armature current density with an impulse-response function dependent on the physical parameters of the experimental configuration. Deconvolution of the resulting signal corrupted with measurement noise is performed using a parametric Wiener filter. Simulated and actual numerical examples show that the physical length and overall shape of the armature current profile can be accurately determined using this method. However, the spatial resolution in the deconvolved signal is limited to approximately 1 to 2 cm for practical railgun applications.
机译:结果表明,可以从B点探针的记录信号中恢复出电磁式轨道枪中动电枢电流分布的空间分布。该方法与以前的方法的不同之处在于,无需对电枢电流密度的功能形式进行先验假设。从某些简化的假设出发,开发了一种轨道炮电路模型,从中可以得出B点探测信号,作为电枢电流密度与脉冲响应函数的卷积,该脉冲响应函数取决于实验配置的物理参数。使用参数维纳滤波器对因测量噪声而损坏的结果信号进行反卷积。仿真和实际数值示例表明,使用此方法可以准确确定电枢电流曲线的物理长度和整体形状。但是,对于实际的轨道炮应用,去卷积信号中的空间分辨率被限制为大约1到2 cm。

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