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Simulation investigation of a high-efficiency X-band magnetically insulated line oscillator

机译:高效X波段磁绝缘线振荡器的仿真研究

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The magnetically insulated line oscillator is a preferred crossed-field microwave device designed specifically to generate gigawatt-level microwave. The primary characteristic of the MILO is that it requires no externally applied magnetic field to insulate the electron flow under the SWS. The self-insulating property, inherent in magnetically insulated lines, allows the device to handle an extremely large input power (tens of gigawatts) without ensuing electrical breakdown of the anode-cathode gap. At present, investigation of MILO is focused on L-band, S-band and C-band MILO. The X-band MILO is rarely investigated. In addition, the present models of X-band MILO main exist two deficiencies, namely, low efficiency and anode plasma formation in the load region. Therefore we are motivated to study an X-band MILO. An high-efficiency X-band MILO is presented and investigated numerically in this paper, which can improve the power conversion efficiency through particle simulation as well as eliminate or at least minimize anode plasma formation in the load region.
机译:磁绝缘线振荡器是优选的交叉场微波装置,专门设计用于产生Gigawatt级微波。米洛的主要特征是它不需要外部施加的磁场以使SWS下方的电子流绝缘。磁绝缘线中固有的自绝缘性能允许该装置处理极大的输入功率(几十只Gigawatts),而不随后阳极阴极间隙的击穿。目前,米洛的调查专注于L频段,S波段和C波段。 X频段米洛很少被调查。此外,X频段MILO主要存在两种缺陷,即负载区域中的低效率和阳极等离子体形成。因此,我们有动力研究X频段米洛。在本文中,在数值上呈现并研究了高效的X频段MILO,其可以通过粒子模拟提高功率转换效率,以及消除负载区域中的阳极等离子体形成。

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