论文标题
可行性分析和初步设计,用于对金星大气的原地调查
Feasibility Analysis and Preliminary Design of ChipSat Entry for In-situ Investigation of the Atmosphere of Venus
论文作者
论文摘要
最近在非常小,低成本和低功率配置的电子产品中,适用于航天器中的电子产品启发了创新的小规模卫星概念,例如芯片片,厘米级的卫星,并具有几克质量。这些极小的航天器有可能引入新的空间科学可访问性。由于它们的弹道系数低,因此可以在群集中使用芯片组,以扩展行星气氛的延长调查,从而提供大量的数据,具有高可靠性和冗余性。我们提供了芯片片行星大气进入任务的初步可行性分析,目的是寻找金星大气中的微观生命形式的痕迹。实际上,由于有利的大气条件和微米大小的硫酸气溶胶的存在,金星大气的下部云层可能是寻找微生物生命形式的好目标。模拟指定几何图形的航天器的行星进入的数值模型,适用于任何可用大气数据的大气,并得到实施和验证。结果用于创建在有利于生命的高度的高地筹码巡游中的芯片片巡游的高级设计。该论文讨论了芯片制品任务概念和有关系统级别的航天器初步设计的考虑,包括选择潜在有效载荷。
Recent miniaturization of electronics in very small, low-cost and low-power configurations suitable for use in spacecraft have inspired innovative small-scale satellite concepts, such as ChipSats, centimeter-scale satellites with a mass of a few grams. These extremely small spacecraft have the potential to usher in a new age of space science accessibility. Due to their low ballistic coefficient, ChipSats can potentially be used in a swarm constellation for extended surveys of planetary atmospheres, providing large amounts of data with high reliability and redundancy. We present a preliminary feasibility analysis of a ChipSat planetary atmospheric entry mission with the purpose of searching for traces of microscopic lifeforms in the atmosphere of Venus. Indeed, the lower cloud layer of the Venusian atmosphere could be a good target for searching for microbial lifeforms, due to the favourable atmospheric conditions and the presence of micron-sized sulfuric acid aerosols. A numerical model simulating the planetary entry of a spacecraft of specified geometry, applicable to any atmosphere for which sufficient atmospheric data are available, is implemented and verified. The results are used to create a high-level design of a ChipSat mission cruising in the Venusian atmosphere at altitudes favorable for the existence of life. The paper discusses the ChipSat mission concept and considerations about the spacecraft preliminary design at system level, including the selection of a potential payload.