首页> 外文会议>International astronautical congress >FUTURE SPACE TECHNOLOGIES FOR SUSTAINABILITY ON EARTH
【24h】

FUTURE SPACE TECHNOLOGIES FOR SUSTAINABILITY ON EARTH

机译:未来地球可持续发展技术

获取原文

摘要

The United Nations 2030 Agenda for Sustainable Development is based on 17 Sustainable Development Goals with 169 targets and indicators. Space science, technology and its applications can provide a wide range of solutions to help achieve the Sustainable Development Goals and thus contribute to achieving economic, social and environmental sustainable development. This paper addresses the contributions of space activities from three different perspectives: policy, strategy and technology. It focuses on a sub-set of challenges linked to the Sustainable Development Goals, namely global health, water, energy and urban development. The proposed strategy perspective considers elements, such as interdisciplinarity, spin-in and spin-off transfers, open innovation processes, and sustainability at large. Space exploration programmes are usually conceived around space mission requirements and technologies with a maturity level that allows for their implementation into planned technology roadmaps. Therefore, it is discussed how such roadmaps could better integrate policy and strategic aspects linked to sustainability on Earth. What if a system is efficiently designed to operate in space and at the same time allows for sustainable development on Earth? The further integration of key enabling technologies (big data, artificial intelligence systems, advanced robotics) are opening a new era in the exploration of other planets where autonomy is an essential requirement. At the same time such developments can become an integral part of the future developments on Earth, providing smart solutions to the citizens of tomorrow and opening up new business sectors associated to these spin-offs. For example, the development of Additive Layer Manufacturing technology will simplify the production of mechanical components and their logistic chain. However, it will also open up new ways of thinking on a large scale, for instance in the construction of buildings and structures using local materials, such as Moon regolith or Earth sand. Other examples are In-Situ Resource Utilisation and viewing a building or a city as a spaceship system, which will not only allow space habitats to include self-regenerative functions, but also allow smart cities on Earth to become greener and more sustainable, especially in view of the expansion of population, the resulting densification and increase of urban areas. The aim of the strategy proposed in this paper is to approach sustainability for development from a holistic perspective looking not only at a product of space technology and how one could transfer this into a terrestrial application but also at strategies for achieving spin-offs in compliance with the most urging topics of this century.
机译:《联合国2030年可持续发展议程》以17个可持续发展目标为基础,其中有169个指标和指标。太空科学,技术及其应用可以提供广泛的解决方案,以帮助实现可持续发展目标,从而为实现经济,社会和环境的可持续发展做出贡献。本文从三个不同的角度论述了空间活动的贡献:政策,战略和技术。它着眼于与可持续发展目标相关的一系列挑战,即全球卫生,水,能源和城市发展。拟议的战略观点考虑了以下因素,例如跨学科性,衍生和衍生性转移,开放式创新过程以及总体上的可持续性。空间探索计划通常是围绕太空任务需求和技术而构思的,其成熟度水平使其可以实施到计划的技术路线图中。因此,将讨论这些路线图如何更好地整合与地球可持续性相关的政策和战略方面。如果系统被有效地设计为在太空中运行并同时允许地球上的可持续发展,该怎么办?关键使能技术(大数据,人工智能系统,先进的机器人技术)的进一步集成,在探索其他对自主性至关重要的星球的探索中开辟了一个新时代。同时,这些发展可以成为地球未来发展的组成部分,为未来的公民提供明智的解决方案,并开放与这些附带利益相关的新业务领域。例如,添加层制造技术的发展将简化机械零件及其物流链的生产。但是,这也将开辟大规模的新思维方式,例如在使用当地材料(如月球石或土砂)建造建筑物和结构时。其他示例包括就地资源利用,并将建筑物或城市视为太空飞船系统,这不仅将使太空栖息地具有自我再生功能,而且还将使地球上的智慧城市变得更加绿色,更具可持续性,特别是在鉴于人口的增长,城市的致密化和增加。本文提出的策略的目的是从整体角度着眼于可持续发展,不仅着眼于空间技术的一种产品,以及如何将其转移到地面应用中,而且还着眼于实现与之兼容的附带利益的战略。本世纪最紧迫的话题。

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