Data in the energy domain grows at unprecedented rates and is usually generated by heterogeneous energy systems. Despite the great potential that big data-driven technologies can bring to the energy sector, general adoption is still lagging. Several challenges related to controlled data exchange and data integration are still not wholly achieved. As a result, fragmented applications are developed against energy data silos, and data exchange is limited to few applications. In this paper, we analyze the challenges and requirements related to energy-related data applications. We also evaluate the use of Energy Data Ecosystems (EDEs) as data-driven infrastructures to overcome the current limitations of fragmented energy applications. EDEs are inspired by the International Data Space (IDS) initiative launched in Germany at the end of 2014 with an overall objective to take both the development and use of the IDS reference architecture model to a European/global level. The reference architecture model consists of four architectures related to business, security, data and service, and software aspects. This paper illustrates the applicability of EDEs and IDS reference architecture in real-world scenarios from the energy sector. The analyzed scenario is positioned in the context of the EU-funded H2020 project PLATOON.
翻译:能源领域的数据以前所未有的速度增长,通常由多种能源系统生成。尽管大型数据驱动技术能够给能源部门带来巨大潜力,但总体采用仍然滞后。与控制数据交换和数据整合有关的若干挑战仍未完全实现。因此,根据能源数据仓开发了分散的应用,数据交换仅限于少数应用。我们分析了与能源相关数据应用有关的挑战和要求。我们还评估了能源数据生态系统作为数据驱动基础设施的使用情况,以克服目前分散的能源应用的局限性。电子数据开发受2014年底德国发起的国际数据空间(IDS)倡议的启发,其总体目标是将国际数据空间(IDS)参考结构模型的开发和使用纳入欧洲/全球范围。参考结构模型由四个与企业、安全、数据和服务以及软件有关的架构组成。本文件说明了能源部门在现实世界情景中应用电子数据数据集(EDEs)和国际数据基础设施(IDS)的可适用性。分析设想情景是在欧盟资助的H20项目PLAON项目背景下定位的。