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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >High-Altitude Electromagnetic Pulse (HEMP) Risetime Evolution of Technology and Standards Exclusively for E1 Environment
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High-Altitude Electromagnetic Pulse (HEMP) Risetime Evolution of Technology and Standards Exclusively for E1 Environment

机译:E1环境专用技术和标准的高海拔电磁脉冲(HEMP)上升时间演变

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摘要

There are many different definitions of the risetime of a transient waveform. In the context of high-altitude electromagnetic pulse (HEMP) standards, the 10–90% risetime of an idealized double exponential waveform has been defined and used for many decades. However, such a risetime definition is not strictly applicable to the transient voltage out of a pulse generator, since no practical switch can close in zero time. In this paper, we discuss various definitions and their applicability. More importantly, pulse power technology has evolved over five decades and the achievable risetimes have come down from 10s of nanoseconds to 10s of picoseconds. As a corollary, the highest achievable voltage gradient has been going upwards of 10 $^{15}$?V/s. In this paper, we review the definitions of risetime, and trace the evolution of technology and HEMP Standards, exclusively for the E1 environments.
机译:瞬态波形的上升时间有许多不同的定义。在高海拔电磁脉冲(HEMP)标准的背景下,理想的双指数波形的上升时间已定义并使用了数十年。但是,这种上升时间定义并不严格适用于脉冲发生器输出的瞬态电压,因为没有实际的开关可以在零时间内闭合。在本文中,我们讨论了各种定义及其适用性。更重要的是,脉冲功率技术已经发展了五十多年,可实现的上升时间已从10纳秒降低到10皮秒。因此,可达到的最高电压梯度一直上升到10 $ ^ {15} $ ?V / s。在本文中,我们回顾了上升时间的定义,并跟踪了专门针对E1环境的技术和HEMP标准的演变。

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