Cognitive Soil Digital Twin for Monitoring the Soil Ecosystem: A Conceptual Framework

IF 2.9 Q2 SOIL SCIENCE Soil Systems Pub Date : 2023-10-17 DOI:10.3390/soilsystems7040088
Nikolaos L. Tsakiridis, Nikiforos Samarinas, Eleni Kalopesa, George C. Zalidis
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Abstract

The digital twin concept has found widespread application across diverse industries. Herein, we present a comprehensive conceptual framework for the cognitive soil digital twin, which embodies the intricate physical reality of the soil ecosystem, aiding in its holistic monitoring and comprehension. The digital twin can seamlessly integrate a multitude of sensor data sources, including field Internet of Things sensors, remote sensing data, field measurements, digital cartography, surveys, and other Earth observation datasets. By virtue of its duality, this digital counterpart facilitates data organisation and rigorous analytical exploration, unravelling the intricacies of physical, chemical, and biological soil constituents while discerning their intricate interrelationships and their impact on ecosystem services. Its potential extends beyond mere data representation, acting as a versatile tool for scenario analysis and enabling the visualisation of diverse environmental impacts, including the effects of climate change and transformations in land use or management practices. Beyond academic circles, the digital twin’s utility extends to a broad spectrum of stakeholders across the entire quadruple helix, encompassing farmers and agronomists, soil researchers, the agro-industry, and policy-makers. By fostering collaboration among these stakeholders, the digital twin catalyses informed decision-making, underpinned by data-driven insights. Moreover, it acts as a testbed for the development of innovative sensors and monitoring frameworks, in addition to providing a platform that can educate users and the broader public using immersive and innovative visualisation tools, such as augmented reality. This innovative framework underscores the imperative of a holistic approach to soil ecosystem monitoring and management, propelling the soil science discipline into an era of unprecedented data integration and predictive modelling, by harnessing the effects of climate change towards the development of efficient decision-making.
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监测土壤生态系统的认知土壤数字孪生:一个概念框架
数字孪生概念在不同行业得到了广泛应用。在此,我们提出了一个全面的认知土壤数字孪生概念框架,它体现了土壤生态系统复杂的物理现实,有助于其整体监测和理解。数字孪生体可以无缝集成多种传感器数据源,包括现场物联网传感器、遥感数据、现场测量、数字制图、调查和其他地球观测数据集。由于其双重性,这种数字对应物促进了数据组织和严格的分析探索,揭示了土壤物理、化学和生物成分的复杂性,同时识别了它们复杂的相互关系及其对生态系统服务的影响。它的潜力不仅限于数据表示,还可以作为情景分析的多功能工具,使各种环境影响,包括气候变化的影响和土地使用或管理做法的转变,能够可视化。在学术界之外,数字孪生的效用扩展到整个四螺旋结构的广泛利益相关者,包括农民和农艺师、土壤研究人员、农业工业和政策制定者。通过促进这些利益相关者之间的合作,数字孪生体促进了明智的决策,并以数据驱动的见解为基础。此外,它还充当创新传感器和监测框架开发的测试平台,此外还提供了一个平台,可以教育用户和更广泛的公众使用沉浸式和创新的可视化工具,如增强现实。这一创新框架强调了土壤生态系统监测和管理的整体方法的必要性,通过利用气候变化的影响制定有效的决策,推动土壤科学学科进入前所未有的数据整合和预测建模时代。
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来源期刊
Soil Systems
Soil Systems Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
5.30
自引率
5.70%
发文量
80
审稿时长
11 weeks
期刊最新文献
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