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Measurement of Solid Armature’s In-Bore Velocity Using B-Dot Probes in a Series-Augmented Railguns

机译:在串联式增程声炮中使用B点探针测量固体电枢的膛内速度

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The waveform of solid armature displacement and velocity can be obtained by arranging B-dot probe arrays along the barrel of a series augmented railgun. The moment of armature arrival can be detected by an evident change in the differential signal from the B-dot probe while armature passes by. However, it is difficult or even impossible in a railgun to directly pick up the arrival moment, because both armature movement and rail current are responsible for the change of differential signal, especially in the series-augmented railgun where currents in both outer rails and connecting conductors are probably sensed by the B-dot probe. A ratio function (RF) has been introduced to eliminate the influence of current change, which is the ratio of the integral of differential signal to the current. The RF of the armature probe aimed at the armature current will reach a maximum at the moment of armature arrival, while the one at the rail current will reach the median. Three shots with identical initial conditions were conducted in a series-augmented railgun, each of which had adopted the armature probe, rail probe, and Velocity Interferometer System for Any Reflector, respectively. The good agreement between the displacement and velocity waveforms derived from B-dot probes indicated that the method and measurement were valid. The accuracy of the B-dot method is mainly affected by probe dimension and position, railgun current distribution, and electromagnetic noise.
机译:可以通过沿一系列增强型轨道炮的枪管排列B点探测器阵列来获得固体电枢位移和速度的波形。电枢到达的时刻可以通过电枢经过时来自B点探针的差分信号的明显变化来检测。但是,由于电枢的运动和轨道电流都引起差动信号的变化,因此在轨道枪中很难或什至不可能直接获得到达力矩,尤其是在串联增强的轨道枪中,外部轨道和外部的电流均如此B点探针可能会感应到导体。引入了比率函数(RF)以消除电流变化的影响,该影响是差分信号积分与电流的比率。针对电枢电流的电枢探头的RF将在电枢到达时达到最大值,而在电轨电流处的射频将达到中值。在一系列增强的轨道炮中进行了三次初始条件相同的射击,每种枪均分别采用了适用于任何反射器的电枢探头,导轨探头和速度干涉仪系统。从B点探针获得的位移和速度波形之间的良好一致性表明该方法和测量是有效的。 B点法的准确性主要受探头尺寸和位置,轨道枪电流分布以及电磁噪声的影响。

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