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PPPS-2013: Measurement of ESD plasma propagation on a postively charged ISS solar array coupon

机译:PPPS-2013:在带正电荷的ISS太阳能阵优惠券上测量ESD等离子体传播

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It is well known that dielectric surfaces such as those on solar arrays are susceptible to surface charging in the space environment. If the charging is sufficient, a spontaneous arc can occur, triggering an outward-propagating electrostatic discharge plasma. The propagation speed and the fraction of charge cleared by this so-called “brush-fire” plasma, determines the amplitude of potentially damage-inducing current transients on the solar array strings. Numerous ground tests have been performed to determine an appropriate propagation speed, giving a wide range of results. Each study used a slightly different methodology and a completely different test article. To address this inconsistency, a US-wide Round Robin Test Campaign was initiated by AFRL to determine propagation dynamics on a series of shared test articles using common test methodology across multiple labs.1 In this paper, we report on tests performed with the first test article in this series, an ISS-inspired solar array coupon. We induced a positive potential on insulator surfaces via electron beam impingement on the biased coupon, and captured current transients on the solar array strings using current probes on a set of synchronized oscilloscopes. A non-contact, scanning electrostatic probe was used to measure surface potentials and a high speed camera was employed to pinpoint the origin of each discharge event. Interpretation and discussion of our results will be presented.
机译:众所周知,诸如太阳阵列上的电介质表面易于在空间环境中的表面充电。如果充电足够,则可以发生自发弧,触发向外传播的静电放电等离子体。通过该所谓的“刷子 - 火”等离子体清除的传播速度和电荷的分数确定了太阳能阵列串上的潜在损坏电流瞬变的幅度。已经进行了许多地测以确定适当的传播速度,提供各种结果。每项研究使用略有不同的方法和完全不同的测试文章。为了解决这种不一致,AFRL启动了一系列的循环测试活动,以确定在多个实验室中使用常用测试方法的一系列共享测试文章的传播动态。我们报告了本文中的常见测试方法。 1 在本系列中第一个测试文章进行的测试,ISS-Inspired Solar Array优惠券。我们通过电子束冲击在偏置的优惠券上诱导绝缘体表面的正电位,并使用一组同步示波器上的电流探针捕获在太阳阵列串上的电流瞬变。使用非接触式扫描静电探针来测量表面电位,采用高速相机来定位每个放电事件的起源。展示和讨论我们的结果将被提出。

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