首页> 外文OA文献 >Neptune Orbiters Utilizing Solar and Radioisotope Electric Propulsion
【2h】

Neptune Orbiters Utilizing Solar and Radioisotope Electric Propulsion

机译:海王星利用太阳和放射性同位素电力推进器

摘要

In certain cases, Radioisotope Electric Propulsion (REP), used in conjunction with other propulsion systems, could be used to reduce the trip times for outer planetary orbiter spacecraft. It also has the potential to improve the maneuverability and power capabilities of the spacecraft when the target body is reached as compared with non-electric propulsion spacecraft. Current missions under study baseline aerocapture systems to capture into a science orbit after a Solar Electric Propulsion (SEP) stage is jettisoned. Other options under study would use all REP transfers with small payloads. Compared to the SEP stage/Aerocapture scenario, adding REP to the science spacecraft as well as a chemical capture system can replace the aerocapture system but with a trip time penalty. Eliminating both the SEP stage and the aerocapture system and utilizing a slightly larger launch vehicle, Star 48 upper stage, and a combined REP/Chemical capture system, the trip time can nearly be matched while providing over a kilowatt of science power reused from the REP maneuver. A Neptune Orbiter mission is examined utilizing single propulsion systems and combinations of SEP, REP, and chemical systems to compare concepts.
机译:在某些情况下,与其他推进系统结合使用的放射性同位素电推进(REP)可用于减少外行星轨道航天器的飞行时间。与非电动推进航天器相比,当到达目标物体时,它还具有改善航天器的机动性和动力能力的潜力。目前正在研究的基线航空捕获系统任务将在太阳能推进(SEP)阶段被抛弃后捕获到科学轨道。研究中的其他选项将使用所有有效载荷较小的REP传输。与SEP阶段/航空捕获方案相比,在科学航天器中添加REP以及化学捕获系统可以代替航空捕获系统,但会增加跳闸时间。消除了SEP阶段和航空捕获系统,并使用了稍大的运载火箭,Star 48上层阶段和REP / Chemical捕获系统相结合,行程时间几乎可以匹配,同时可提供REP重复利用的一千瓦以上的科学动力演习。使用单个推进系统以及SEP,REP和化学系统的组合对海王星轨道飞行器的任务进行了比较,以比较概念。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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