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A Flux Compression Generator Non-Explosive Test Bed for Explosive Opening Switches

机译:用于爆炸开关的磁通压缩发电机非爆炸试验台

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Helical Flux Compression Generators (HFCG) of a 50 mm form factor have been shown to produce output energies on the order often times the seeded value and a typical deposited energy of 3 kJ into a 3μH inductor. Our previous work with a non-optimized fuse has produced ~ 100 kV into a 15 load, which leads into a regime relevant for High Power Microwave (HPM) systems. It is expected that ~ 300 kV can be achieved with the present 2-stage HFCG driving an inductive storage system with electro-exploding fuse. In order to optimize the electro-explosive wire fuse, we have constructed a non-explosive test bed which simulates the HFCG output with high accuracy. We have designed and implemented a capacitor based, magnetic switching scheme to generate the near exponential rise of the HFCG. The varying inductance approach utilizes 4 stages of inductance change and is based upon a piecewise linear regression model of the HFCG waveform. The non-explosive test bed will provide a more efficient method of component testing and has demonstrated positive initial fuse results.
机译:已经示出了50mm形状因子的螺旋焊剂压缩发生器(HFCG),以在每次播种值和3kJ的典型沉积能量中产生输出能量,并将3kJ的典型沉积能量进入3μH电感器。我们以前的使用非优化保险丝的工作已经生产了〜100 kV进入15负载,这导致了对高功率微波(HPM)系统相关的制度。预期〜300kV可以通过当前的2级HFCG驱动电感存储系统,通过爆炸保险丝驾驶电感储存系统。为了优化电爆导线保险丝,我们构建了一个非爆炸性的试验台,其以高精度模拟了HFCG输出。我们已经设计并实现了基于电容的磁力开关方案,以产生HFCG的近指数升高。变化的电感方法利用4个电感变化阶段,并且基于HFCG波形的分段线性回归模型。非爆炸试验床将提供更有效的组件测试方法,并证明了正初始熔断器结果。

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