首页> 外文会议>International Conference on Recent Advances in Space Technologies >Application of reliability engineering methodology in next generation satellite power system design, manufacturing, and testing
【24h】

Application of reliability engineering methodology in next generation satellite power system design, manufacturing, and testing

机译:可靠性工程方法论在下一代卫星电源系统设计,制造和测试中的应用

获取原文

摘要

Space systems are complex and need to perform under extreme environmental conditions for its expected life, so it is vital to use methodological risk identification and validation of the product in the design stage. For this purpose, the reliability analyses, inspections, and environmental tests mentioned in this paper have been performed methodically during several projects in TUBITAK UZAY. In this paper, TUBITAK UZAY reliability engineering methodology, where ECSS, European Cooperation on Space Standardization standards are used as a guideline, are presented and a real application has been performed for TUBITAK UZAY's Next Generation (NG) Power Distribution Module, UYGAR. Since UYGAR is designed as a part of TUBITAK UZAY's NG power system architecture for Low Earth Orbit, Geostationary Earth Orbit, and Science Missions with a long life high reliability expectation; reliability engineering approach at the beginning of the project becomes crucial. Moreover, power system special requirements are tailored according to European Standard for Space and Electronic Equipment “ECSS-E-ST-20C” and Electrical Power Systems for Unmanned Spacecraft “AIAA-S-122-2007”, by considering single point failure and failure propagation free design to make the electronic design more challenging/robust and make reliability engineering involved in all phases of the project life.
机译:太空系统很复杂,需要在预期寿命的极端环境条件下运行,因此在设计阶段使用方法学上的风险识别和产品验证至关重要。为此,在TUBITAK UZAY的多个项目中,有条不紊地进行了本文中提到的可靠性分析,检查和环境测试。本文介绍了TUBITAK UZAY可靠性工程方法,其中以ECSS(欧洲空间标准化合作标准)为指南,并已在TUBITAK UZAY的下一代(NG)配电模块UYGAR中进行了实际应用。由于UYGAR被设计为TUBITAK UZAY NG电力系统体系结构的一部分,适用于低地球轨道,地球静止地球轨道和科学飞行任务,具有长寿命和高可靠性期望;在项目开始时,可​​靠性工程方法就变得至关重要。此外,考虑到单点故障和故障,根据欧洲空间和电子设备标准“ ECSS-E-ST-20C”和无人航天器电力系统“ AIAA-S-122-2007”量身定制了电源系统的特殊要求。无传播设计,使电子设计更具挑战性/稳健性,并使可靠性工程涉及项目生命的各个阶段。

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