Ontologies for wind energy domain experts – Recommended Practice
風力エネルギー分野の専門家のためのオントロジー – 推奨実践 (AI 翻訳)
Marykovskiy, Yuriy, Farren, Des, MaGill, Charles, Calbimonte, Jean-Paul, Barber, Sarah
🤖 gxceed AI 要約
日本語
本論文は、風力エネルギー分野におけるデジタル化を推進するためのオントロジー作成、公開、保守に関するIEA Wind推奨実践を紹介する。オントロジーによりデータのFAIR性とAI対応性が向上し、相互運用性と知識管理が改善される。新たな公開ツールTechnoPortalを用いた適用例も示す。
English
This paper presents the IEA Wind Recommended Practice for ontology creation, publication, and maintenance to advance digitalization in wind energy. Ontologies enable FAIR and AI-ready data, improving interoperability and knowledge management. A new publishing tool, TechnoPortal, is introduced with application examples.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本でも洋上風力発電の導入拡大に伴い、データ共有とAI活用が重要となっている。本推奨実践は、業界全体の情報モデル標準化に寄与し、SSBJや有報での非財務情報開示におけるデータ連携にも応用可能な知見を提供する。
In the global GX context
As wind energy expands globally, digitalization and data interoperability are critical for efficiency and AI integration. This recommended practice supports FAIR data principles and can inform data-sharing frameworks under initiatives like the Global Wind Energy Council's digitalization efforts.
👥 読者別の含意
🔬研究者:Provides ontology engineering best practices and a tool for wind energy data interoperability.
🏢実務担当者:Offers a standardized approach to creating and managing ontologies for wind farm data management and digital twins.
📄 Abstract(原文)
Recently recognised as a "megatrend" in the wind energy sector [1], digitalisation encompasses the organisational and industry-wide adoption of data and digital technologies to enhance efficiency, generate insights, and innovate products and services [2]. A major obstacle to advancing digitalisation in the wind energy sector is the absence of widely adopted, community-driven information models [2, 3, 4]. This hinders seamless information exchange and knowledge management [4]. In particular, improving interoperability and data sharing among stakeholders is required to support advancements in technologies such as Intelligent Digital Twins and Artificial Intelligence (AI) [5]. Ontologies make data AI-ready by providing a structured, shared vocabulary that defines relationships and semantics, enabling machines to interpret, integrate, and reason over information consistently. The word “ontology” is defined as an explicit specification of a shared conceptualisation [6], meaning an abstract model of the world that identifies entities, their properties, and relationships. The concepts defined in an ontology are specified not only with clear syntax but also explicit semantics, thus reducing uncertainty for their interpretation. In digitalising the wind energy sector, ontologies enable precise formalisation of knowledge—from defining blade anomaly terms or inference rules for Failure Modes Effects and criticality analysis to modelling the entire domain. Given the complexity and evolution of information in the sector, ontologies must be modular, extensible, and interoperable. Following ontology engineering best practices ensures knowledge and data remain findable, accessible, interoperable, and reusable (FAIR) [7]. In this work, we present the new IEA Wind Recommended Practice “Ontology creation, publication, and maintenance for wind energy domain experts” [8], and show how it is being applied using a new ontology publishing tool, the TechnoPortal [9], within the WeDoWind Information Modelling Community [10] to create and share ontologies, in order to increase the FAIRness and AI-readiness of wind energy data.
🔗 Provenance — このレコードを発見したソース
- Zenodo https://zenodo.org/records/20556735first seen 2026-06-06 04:14:57 · last seen 2026-06-08 04:13:59
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