航天器单元噪声传播影响电磁兼容保证的新方法

Yuzo Yajima, H. Kinoda, T. Aoki, C. Miyazaki, Y. Sasaki, Masayuki Tatsumi, T. Kasai
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引用次数: 2

摘要

在轨卫星中,航天器材料的放电是造成单元故障的主要原因。故障主要有两大原因,一是蠕变放电的电压阈值材料/工艺低,二是噪声单元弱。如果交换单元受到噪声的影响,热交换将导致严重故障。此外,由于使用最新的组件/COTS,它容易受到噪声的影响。在以前的卫星开发过程中,我们决定卫星制造商选择放电硬化材料,但不足以评估材料放电引起的噪声传播影响的知识。放电噪声有两种可能的传播路径:空间传播和面板传播。众所周知,有些单元无法用现有的测试方法发现问题。目前的标准测试方法(来自MIL/ESA)主要是从电缆耦合的空间传播角度进行的。仅仅消除面板传播的影响是不够的。目前世界标准的测试方法侧重于通过空间传播对电缆施加噪声。作为评估通过面板传播的噪声和电缆以外的影响的方法,它是不够的。在本文中,我们提出了一种测试方法来评估噪声在结构面板上的传播对机组的影响,基于我们对枪发生器的测试结果。首先,通过电子束电阻率测试得到了一些材料的介电表面击穿电压,这是材料的基本特性。然后将单元安装在卫星模型面板上(模拟卫星结构:为Al蜂窝芯/Al蒙皮),进行噪声注入试验。测量设备发生故障的阈值。对简单评价模型(采用Al金属板)和卫星模型板进行了比较,得到了与卫星模型板结果相同的评价结果。因此,我们提出了一种简单的测试方法,使用Al平板和噪声源作为噪声通过卫星结构面板传播的评估方法。我们还介绍了我们的活动,将我们的发现实施到EMC技术标准中,不仅是日本标准文件,而且是ISO等国际标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New approach for EMC Assurance of Noise Propagation Effects on Spacecraft Unit
In orbit satellite, it is major source of unit malfunction that spacecraft material discharging. The two major reason of malfunction are, 1: Low voltage threshold material/process for creeping discharge, and 2: Weak unit for noise. If the switching unit is affected by noise, critical failure occurs due to the hot-switching. In addition, it is susceptible to noise by using the newest components/COTS.In the through of previous satellite development, we decided that satellite manufacturer selected discharge hardened material, but not enough to evaluate knowledge for effects of noise propagation caused by material discharge. There are two possible propagation paths for the discharge noise: space propagation and panel propagation.Well known as that some unit cannot find problems with existing test methods. The major perspective of current standard test method (from MIL/ESA) are space propagation for coupling of cable. It is not enough to evaporate the influence of panel propagation. The test method that is currently the world's standard is focused on applying noise to cables by spatial propagation. It is not sufficient as a method for evaluating the noise that propagates through the panel and the effects other than the cable.In this paper, we propose the test method to evaluate the effect on the unit for noise propagation on the structure panel, based on our test results performed by the gun generator.First of all, we got Dielectric Surface Breakdowns Voltage of some materials by ELECTRON-BEAM RESISTIVITY TEST that are basic characteristics. After that, the unit was mounted on a satellite model panel (modeling the satellite structure: it is Al honeycomb core/Al skin), and the noise injection test was performed. Measured the threshold at which the device malfunctioned.A simple evaluation model (using Al metal panel) and a satellite model panel were compared, and the same evaluation result as the satellite model panel result was obtained.Therefore, we propose a simple test method using an Al flat panel and a noise source as an evaluation method for the noise propagating through the satellite structure panel.We also introduce our activity to implement our findings into EMC technical standards not only Japanese standard document, but also international standard such as ISO.
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