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Repetitive pulse application of self-healing high voltage capacitors

机译:自愈式高压电容器的重复脉冲施加

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In the last fifteen years, self-healing high voltage capacitors have become standard technology for single-shot and low repetition rate (>1 shot/minute) applications in R&D environments, such as inertial confinement fusion, electromagnetic launchers, electrochemical guns, high field magnet facilities, etc. Such capacitors offer higher energy density and/or longer life and higher reliability in many applications. Standard self-healing capacitors, built with vapor-deposited metallized electrodes, have limited ability to carry both peak pulse and continuous RMS (root mean square) currents, generate more heat than discrete foil capacitors, and have lower thermal conductivity for heat dissipation. For these reasons, many pulse power applications have been unable to utilize self-healing technology. For example, moderate to high repetition rate (/spl ges/10 Hz), high voltage capacitors built today are generally not of the self-healing type due to the higher energy losses and poorer thermal conductivity of metallized electrode capacitors. This results in large thermal gradients and overheating. Instead, such capacitors are still manufactured using discrete foil electrodes, which provide excellent electrical and thermal conductivity. The economic and technical benefits of self-healing capacitors continue to drive research and development to expand their operational envelope. Areas of research include "hybrid" electrode systems, integrated cooling, segmented electrodes, and higher temperature dielectrics. This paper will explore the application of self-healing capacitor technologies to repetitive pulse power systems. Present status of the technology will be described and future performance improvements will be projected.
机译:在过去的十五年中,自愈式高压电容器已成为惯性约束聚变,电磁发射器,电化学枪,高场等研发环境中单次发射和低重复率(> 1次发射/分钟)应用的标准技术。在许多应用中,此类电容器可提供更高的能量密度和/或更长的寿命以及更高的可靠性。标准的自修复电容器由气相沉积的金属化电极构成,承载峰值脉冲和连续RMS(均方根)电流的能力有限,比分立的箔式电容器产生更多的热量,并且具有较低的导热性以进行散热。由于这些原因,许多脉冲功率应用无法利用自愈技术。例如,在中等到高的重复频率(/ spl ges / 10 Hz)的情况下,当今制造的高压电容器由于金属化电极电容器的较高能量损耗和较差的导热性而通常不属于自修复类型。这导致较大的热梯度和过热。取而代之的是,这种电容器仍然使用离散的箔电极制造,其提供了优异的导电性和导热性。自愈电容器的经济和技术优势继续推动研发,以扩大其工作范围。研究领域包括“混合”电极系统,集成冷却,分段电极和高温电介质。本文将探讨自愈电容器技术在重复脉冲功率系统中的应用。将描述该技术的当前状态,并计划未来的性能改进。

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