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面向可持续发展目标和气候行动的软体机器人技术。

Soft robotics towards sustainable development goals and climate actions.

作者信息

Giordano Goffredo, Murali Babu Saravana Prashanth, Mazzolai Barbara

机构信息

Bioinspired Soft Robotics, Istituto Italiano di Tecnologia (IIT), Genova, Italy.

Department of Mechanics Mathematics and Management, Politecnico di Barit, Bari, Italy.

出版信息

Front Robot AI. 2023 Mar 17;10:1116005. doi: 10.3389/frobt.2023.1116005. eCollection 2023.

Abstract

Soft robotics technology can aid in achieving United Nations' Sustainable Development Goals (SDGs) and the Paris Climate Agreement through development of autonomous, environmentally responsible machines powered by renewable energy. By utilizing soft robotics, we can mitigate the detrimental effects of climate change on human society and the natural world through fostering adaptation, restoration, and remediation. Moreover, the implementation of soft robotics can lead to groundbreaking discoveries in material science, biology, control systems, energy efficiency, and sustainable manufacturing processes. However, to achieve these goals, we need further improvements in understanding biological principles at the basis of embodied and physical intelligence, environment-friendly materials, and energy-saving strategies to design and manufacture self-piloting and field-ready soft robots. This paper provides insights on how soft robotics can address the pressing issue of environmental sustainability. Sustainable manufacturing of soft robots at a large scale, exploring the potential of biodegradable and bioinspired materials, and integrating onboard renewable energy sources to promote autonomy and intelligence are some of the urgent challenges of this field that we discuss in this paper. Specifically, we will present field-ready soft robots that address targeted productive applications in urban farming, healthcare, land and ocean preservation, disaster remediation, and clean and affordable energy, thus supporting some of the SDGs. By embracing soft robotics as a solution, we can concretely support economic growth and sustainable industry, drive solutions for environment protection and clean energy, and improve overall health and well-being.

摘要

软机器人技术可以通过开发由可再生能源驱动的自主、对环境负责的机器,助力实现联合国可持续发展目标(SDGs)和《巴黎气候协定》。通过利用软机器人技术,我们可以通过促进适应、恢复和修复,减轻气候变化对人类社会和自然世界的不利影响。此外,软机器人技术的应用可以在材料科学、生物学、控制系统、能源效率和可持续制造工艺等领域带来突破性发现。然而,为了实现这些目标,我们需要在理解具身智能和物理智能的生物学原理、环保材料以及节能策略方面取得进一步进展,以便设计和制造能够自主运行并适用于实际场景的软机器人。本文提供了关于软机器人技术如何解决环境可持续性这一紧迫问题的见解。大规模可持续制造软机器人、探索可生物降解和受生物启发材料的潜力以及集成车载可再生能源以提升自主性和智能,是我们在本文中讨论的该领域的一些紧迫挑战。具体而言,我们将展示适用于实际场景的软机器人,这些机器人可用于城市农业、医疗保健、土地和海洋保护、灾难修复以及清洁且价格合理的能源等目标生产应用,从而支持部分可持续发展目标。通过将软机器人技术作为一种解决方案,我们可以切实支持经济增长和可持续产业,推动环境保护和清洁能源解决方案的发展,并改善整体健康和福祉。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc75/10064016/1900821966a0/frobt-10-1116005-g001.jpg

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