首页> 外文会议>Space technology and applications international forum >Lessons Learned Using COTS Electronics for the International Space Station Radiation Environment
【24h】

Lessons Learned Using COTS Electronics for the International Space Station Radiation Environment

机译:利用COTS电子产品为国际空间站辐射环境的经验教训

获取原文

摘要

The mantra of Faster, Better, Cheaper has to a large degree been interpreted as using Commercial Off The Shelf (COTS) components and/or circuit boards. One of the first space applications to actually use COTS in space along with radiation performance requirements was the EXpedite the PRocessing of Experiments to Space Station (EXPRESS) Rack program, for the International Space Station (ISS). In order to meet the performance, cost and schedule targets, military grade Versa Module Eurocard (VME) was selected as the baseline design for the main computer, the Rack Interface Controller (RIC). VME was chosen as the computer backplane because of the large variety of military grade boards available, which were designed to meet the military environmental specifications (thermal, shock, vibration, etc.). These boards also have a paper pedigree in regards to components. Since these boards exceeded most ISS environmental requirements, it was reasoned using COTS mil-grade VME boards, as opposed to designing custom boards could save significant time and money. It was recognized up front the radiation environment of ISS, while benign compared to many space flight applications, would be the main challenge to using COTS. Thus in addition to selecting vendors on how well their boards met the usual performance and environmental specifications, the board's parts lists were reviewed on how well they would perform in the ISS radiation environment. However, issues with verifying that the available radiation test data was applicable to the actual part used, vendor part design changes and the fact most parts did not have valid test data soon complicated board and part selection in regards to radiation.
机译:Mantra更快,更好地更便宜地在很大程度上被解释为使用货架(COTS)组件和/或电路板的商业。用于实际使用空间中的婴儿床的第一空间应用之一以及辐射性能要求是加快对空间站(Express)机架程序的实验的处理,为国际空间站(ISS)。为了满足性能,成本和日程计划目标,选用军用等级Versa模块Eurocard(VME)作为主计算机的基线设计,机架接口控制器(RIC)。选择VME作为电脑背板,因为各种各样的军用级板,旨在满足军事环境规范(热,冲击,振动等)。这些板还有一个纸质谱系于组件。由于这些板超出了大多数ISS环境要求,因此使用COTS MIL级VME板的推理,而不是设计定制委员会可以节省大量时间和金钱。它被认可的辐射环境在ISS的辐射环境中,而良性相比,与许多太空飞行应用相比,将是使用COTS的主要挑战。因此,除了选择供应商的情况下,他们的董事会在符合通常的性能和环境规范的情况下,董事会的零件清单是关于他们在ISS辐射环境中的绩效程度的审查。但是,验证可用辐射测试数据的问题适用于所用实际的部分,供应商部件设计变更,并且大多数零件没有有效的测试数据很快复杂的板和部分选择对辐射。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号