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火星样本返回(MSR)科学计划的原理和设计方案。

Rationale and Proposed Design for a Mars Sample Return (MSR) Science Program.

机构信息

Canadian Space Agency, Saint-Hubert, Quebec, Canada.

German Aerospace Center (DLR), Institute of Planetary Research, Berlin, Germany.

出版信息

Astrobiology. 2022 Jun;22(S1):S27-S56. doi: 10.1089/AST.2021.0122. Epub 2022 May 19.

DOI:10.1089/AST.2021.0122
PMID:34904885
Abstract

The Mars Sample Return (MSR) Campaign represents one of the most ambitious scientific endeavors ever undertaken. Analyses of the martian samples would offer unique science benefits that cannot be attained through orbital or landed missions that rely only on remote sensing and measurements, respectively. As currently designed, the MSR Campaign comprises a number of scientific, technical, and programmatic bodies and relationships, captured in a series of existing and anticipated documents. Ensuring that all required scientific activities are properly designed, managed, and executed would require significant planning and coordination. Because there are multiple scientific elements that would need to be executed to achieve MSR Campaign success, it is critical to ensure that the appropriate management, oversight, planning, and resources are made available to accomplish them. This could be achieved a formal MSR Science Management Plan (SMP). A subset of the MSR Science Planning Group 2 (MSPG2)-termed the SMP Focus Group-was tasked to develop inputs for an MSR Campaign SMP. The scope is intended to cover the interface to the Mars 2020 mission, science elements in the MSR flight program, ground-based science infrastructure, MSR science opportunities, and the MSR sample and science data management. In this report, a comprehensive MSR Science Program is proposed that comprises specific science bodies and/or activities that could be implemented to address the science functionalities throughout the MSR Campaign. The proposed structure was designed by taking into consideration previous management review processes, a set of guiding principles, and key lessons learned from previous robotic exploration and sample return missions. Executive Summary The Mars Sample Return (MSR) Campaign represents one of the most ambitious scientific endeavors ever undertaken. Analyses of the martian samples would offer unique science benefits that cannot be attained through orbital or landed missions that rely only on remote sensing and measurements, respectively. Ensuring that all required scientific activities are properly designed, managed, and executed would require significant planning and coordination. As currently designed, the MSR Campaign comprises a number of scientific, technical, and programmatic bodies and relationships, captured in a series of existing and anticipated documents. Because there are so many scientific elements that would need to be executed to achieve MSR Campaign success, it is critical to ensure that the appropriate management, oversight, planning, and resources are made available to accomplish them. To date, however, no dedicated budget lines within NASA and ESA have been made available for these purposes, and no formal MSR Science Management Plan (SMP) has yet been established. It is thus evident that: To aid in planning, the MSR Science Program requires an overarching SMP to fully describe how it could be implemented to meet the MSR scientific objectives and maximize the overall science return. A subset of the MSR Science Planning Group 2 (MSPG2)-termed the SMP Focus Group-was tasked to develop inputs for the MSR Campaign SMP. The scope covers the interface to the Mars 2020 mission, science elements in the MSR flight program, ground-based science infrastructure, MSR science opportunities, and the MSR sample and science data management. Some of the required bodies and activities already exist; the remainder require definition. In this report, a comprehensive MSR Science Program is proposed, comprising specific science bodies and/or activities that could be implemented to address the science functionalities throughout the MSR Campaign. The proposed structure was designed by taking into consideration previous management review processes, a set of guiding principles, and key lessons learned from previous robotic exploration and sample return missions. While we acknowledge that the proposal is non-unique, that is, other implementations could meet the overall needs of the MSR Campaign, we have striven to optimize efficiencies and eliminate unnecessary overlap wherever possible to reduce the potential cost and complexity of the MSR Science Program. Many elements of the proposed Science Program are interdependent, as the decision to trigger certain bodies or activities depend on reaching key milestones throughout the MSR Campaign. Although the timing of certain elements may be flexible depending on the anticipated date of samples arriving on Earth, it is crucial that others are implemented as soon as is feasible. As a first step, formalizing the Science Program's management structure as soon as possible would ensure that impending time-sensitive trades are conducted, and the resulting decisions are made with adequate scientific input. Summary of Findings : A joint science management structure and documented agreements among the MSR Partners are required to coordinate the MSR Science Program elements that are not currently defined in existing structures or documents. : A long-term ESA/NASA MSR Science Program, along with the necessary funding and human resources, will be required to accomplish the end-to-end scientific objectives of MSR. : The MSR Science Management Plan should be linked to, but not encompass, other required functionalities within the MSR Campaign. Input will be needed to produce formal plans for (at a minimum) curation, planetary protection, data management, and public engagement. : The guiding principles proposed in the MSR Science Planning Group (MSPG) Framework document (2019c) remain appropriate and relevant and should be utilized in drafting the MSR Science Memorandum of Understanding (MOU) and Science Management Plan. : MSR scientific return would be maximized if participation in the MSR Science Program is not limited to scientists sponsored by existing MSR Partners; rather, opportunities should be provided to scientists from around the world. All programmatic decision-making power ( selection of competitive proposals) would still rest with the Partners. : At the implementation level, the MSR Science Program should, wherever possible, leverage structures, programs, and lessons-learned from previous mission organization to benefit from their experiences to engender familiarity among both decision-makers and the science community. : The MSR Science Program requires the establishment of scientific bodies to meet management, science operations, and public participation needs. These bodies require dedicated funding, addressing scientific functionalities that span the entirety of the MSR Campaign. : Some elements of the MSR Science Program cannot be delayed in the event of an MSR Program schedule delay, as they are linked to key decisions or operations of the Mars 2020 mission.

摘要

火星样本返回(MSR)任务代表了有史以来最具雄心的科学探索之一。对火星样本的分析将提供独特的科学收益,这是仅依靠轨道或着陆任务分别依靠遥感和测量无法实现的。

目前的设计方案中,MSR 任务包含了一系列科学、技术和计划方面的机构和关系,这些都体现在现有的和预期的文件中。确保所有必需的科学活动都得到了妥善设计、管理和执行,这需要大量的规划和协调。由于需要执行多个科学元素才能实现 MSR 任务的成功,因此至关重要的是确保提供适当的管理、监督、规划和资源来实现这些元素。这可以通过制定正式的 MSR 科学管理计划(SMP)来实现。

MSR 科学规划小组 2(MSPG2)的一个子集,称为 SMP 焦点小组,负责为 MSR 任务的 SMP 制定输入。该范围旨在涵盖与火星 2020 任务的接口、MSR 飞行计划中的科学元素、地面科学基础设施、MSR 科学机会以及 MSR 样本和科学数据管理。在本报告中,提出了一个全面的 MSR 科学计划,其中包含可以实施的特定科学机构和/或活动,以解决整个 MSR 任务中的科学功能。

所提出的结构是通过考虑之前的管理审查过程、一组指导原则以及从之前的机器人探索和样本返回任务中吸取的关键经验教训而设计的。

执行摘要

火星样本返回(MSR)任务代表了有史以来最具雄心的科学探索之一。对火星样本的分析将提供独特的科学收益,这是仅依靠轨道或着陆任务分别依靠遥感和测量无法实现的。

确保所有必需的科学活动都得到了妥善设计、管理和执行,这需要大量的规划和协调。目前的设计方案中,MSR 任务包含了一系列科学、技术和计划方面的机构和关系,这些都体现在现有的和预期的文件中。由于需要执行多个科学元素才能实现 MSR 任务的成功,因此确保提供适当的管理、监督、规划和资源来实现这些元素是至关重要的。

然而,到目前为止,NASA 和 ESA 都没有为此目的提供专用预算,也没有建立正式的 MSR 科学管理计划(SMP)。因此,显而易见的是:

为了辅助规划,MSR 科学计划需要一个全面的 SMP,以全面描述如何实施该计划以实现 MSR 科学目标并最大限度地提高整体科学收益。

MSPG2 的一个子集,称为 SMP 焦点小组,负责为 MSR 任务的 SMP 制定输入。该范围涵盖了与火星 2020 任务的接口、MSR 飞行计划中的科学元素、地面科学基础设施、MSR 科学机会以及 MSR 样本和科学数据管理。一些必需的机构和活动已经存在;其余的需要定义。在本报告中,提出了一个全面的 MSR 科学计划,其中包含可以实施的特定科学机构和/或活动,以解决整个 MSR 任务中的科学功能。

所提出的结构是通过考虑之前的管理审查过程、一组指导原则以及从之前的机器人探索和样本返回任务中吸取的关键经验教训而设计的。虽然我们承认该提案并非独一无二,即其他实施方式也可以满足 MSR 任务的总体需求,但我们力求优化效率并尽可能消除不必要的重叠,以降低 MSR 科学计划的潜在成本和复杂性。

MSR 科学计划中的许多元素是相互依存的,因为触发某些机构或活动的决定取决于整个 MSR 任务中的关键里程碑。虽然某些元素的时间可能取决于预计到达地球的样本的日期,但其他元素的实施应尽快进行。作为第一步,尽快确定科学计划的管理结构将确保进行即将到来的对时间敏感的交易,并确保以充分的科学投入做出决策。

总结发现

需要一个联合的科学管理结构和 MSR 合作伙伴之间的文件协议,以协调当前不在现有结构或文件中定义的 MSR 科学计划元素。

需要长期的 ESA/NASA MSR 科学计划以及必要的资金和人力资源,以实现 MSR 的端到端科学目标。

MSR 科学管理计划应与但不包含 MSR 任务中的其他必需功能。需要投入来制定正式计划,以进行(至少)养护、行星保护、数据管理和公众参与。

MSR 科学规划小组(MSPG)框架文件(2019c)中提出的指导原则仍然是合适和相关的,应在起草 MSR 科学谅解备忘录(MOU)和科学管理计划时加以利用。

如果 MSR 科学计划的参与不限于现有 MSR 合作伙伴赞助的科学家,而是为来自世界各地的科学家提供机会,那么 MSR 的科学收益将最大化。所有方案决策权力(选择竞争性提案)仍将由合作伙伴掌握。

在实施层面上,MSR 科学计划应尽可能利用之前任务组织的结构、计划和经验教训,从他们的经验中受益,并使决策者和科学界都熟悉这些计划。

MSR 科学计划需要建立科学机构,以满足管理、科学运行和公众参与的需求。这些机构需要专用资金,以解决跨越整个 MSR 任务的科学功能。

MSR 科学计划中的一些元素不能因 MSR 计划的延迟而延迟,因为它们与火星 2020 任务的关键决策或操作有关。

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