首页> 外文会议>AIAA aviation forum;AIAA/ISSMO multidisciplinary analysis and optimization conference >Optimal Spacecraft Hardware Placement to Minimize Required Power Input for Hibernation Survival
【24h】

Optimal Spacecraft Hardware Placement to Minimize Required Power Input for Hibernation Survival

机译:最佳的航天器硬件布置,可将休眠状态所需的功率输入降至最低

获取原文
获取外文期刊封面目录资料

摘要

Spacecraft hardware placement is an important factor in the structural and thermal performance of a spacecraft. This is especially true for a solar powered lunar roving vehicle with a passive thermal control system. Lunar roving vehicles are subjected to a 354 hour day and night cycle with extreme high and low temperature environments. A systematic approach to hardware placement considering thermal performance would allow engineers to fully explore the design space early in the spacecraft design process. Genetic algorithm optimization is used to determine optimum component placement that minimizes required hibernation power during the lunar night. This optimization strategy enables significant mass reduction of onboard batteries while retaining system performance. The optimization strategy is capable of considering conductive and radiative heat transfer to produce a hardware layout strategy that survives both the worst case hot and worst case cold conditions required for the lunar roving vehicle. A case study was presented that demonstrates a 56% reduction in hibernation power in a 19 component system while ensuring all 19 components have a small form factor, a balanced center of gravity, and operate within their allowable temperature ranges.
机译:航天器的硬件放置是航天器结构和热性能的重要因素。对于具有被动热控制系统的太阳能月球巡回车尤其如此。月球巡回车在极端高温和低温环境下昼夜循环354小时。考虑到热性能的系统化硬件放置方法将使工程师能够在航天器设计过程的早期充分探索设计空间。遗传算法优化用于确定最佳组件放置位置,该组件放置位置可在农历夜晚期间将所需的休眠功能降至最低。这种优化策略可显着减少车载电池的质量,同时保持系统性能。该优化策略能够考虑传导和辐射的热传递,以产生一种硬件布局策略,该策略可以在月球巡回飞行器所需的最坏情况下的热和最坏情况下的冷条件下生存。案例研究表明,在19个组件的系统中,冬眠能力降低了56%,同时确保所有19个组件的外形尺寸小,重心平衡并且可以在其允许的温度范围内运行。

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