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An inductive scheme of power conditioning at mega-Ampere currents

机译:兆安电流下的功率调节感应方案

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摘要

This work describes an inductive energy storage scheme intended for power multiplication at mega-Ampere currents. The key power multiplication element of the scheme is an opening switch generating the voltage of inductive origin. The switch represents an additional volume with magnetically accelerated solid-state or plasma conductor between the generator and the load. Motion of the conductor increases the inductance of the volume. A sufficiently fast increase of this inductance at the end of magnetic energy storage time ensures power multiplication. A critical requirement for the accelerated conductor is the possibility of temporal profiling of the inductance increase. A proof-of-principle experiment at GIT12 shows that such profiling is possible. We suggest a simple analysis of the scheme efficiency and illustrate this analysis for a multi-mega-Ampere class generator. The scheme is alternative to existing inductive energy storage technologies for pulsed-power conditioning at high currents.
机译:这项工作描述了一种感应能量存储方案,旨在在兆安培电流下进行功率倍增。该方案的关键功率倍增元件是一个产生电感源电压的断开开关。开关代表一个额外的体积,在发生器和负载之间具有磁加速的固态或等离子导体。导体的运动会增加体积的电感。在磁能存储时间结束时,该电感的足够快的增加可确保功率倍增。加速导体的关键要求是电感量随时间变化的可能性。在GIT12上进行的原理验证实验表明,这种剖析是可能的。我们建议对方案效率进行简单分析,并为一个数百万安培级的发生器说明这一分析。该方案替代了用于大电流脉冲功率调节的现有电感式能量存储技术。

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