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The next era of electrification: engineering adaptive energy infrastructures for a decarbonized society

電化の新時代:脱炭素社会のための適応型エネルギーインフラの設計 (AI 翻訳)

Sutikno, Tole

Zenodoプレプリント2026-08-01#エネルギー転換Origin: Global対象セクター: power
DOI: 10.11591/ijeecs.v43.i2.pp355-362
原典: https://zenodo.org/records/21898651
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🤖 gxceed AI 要約

日本語

本稿は、再生可能エネルギー統合、電力電子、分散型エネルギー資源、蓄電池、電化輸送、知的エネルギー管理などの進展が、従来の電力システムを柔軟で相互接続されたレジリエントなインフラへ変革することを論じる。適応型電化のパラダイムを提唱し、将来の電力ネットワークが発電・貯蔵・変換・送配電・消費を動的に調整する必要性を強調する。グリッドフォーミング電力電子、適応型マイクログリッド、知的バッテリー管理、固体変換、デジタル化、ハイブリッドAC/DCシステム、人間-AI協調意思決定などの研究方向性を提示する。

English

This editorial discusses the transformation of conventional power systems into flexible, interconnected, and resilient infrastructures driven by advances in renewable integration, power electronics, distributed energy resources, battery storage, electrified transport, and intelligent energy management. It advocates an adaptive electrification paradigm where future networks dynamically coordinate generation, storage, conversion, transmission, distribution, and consumption. It highlights research directions including grid-forming power electronics, adaptive microgrids, intelligent battery management, solid-state conversion, digitalized infrastructures, hybrid AC/DC systems, and human-AI decision-making.

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

日本のGX文脈では、再生可能エネルギー導入拡大と電力系統の安定化が重要課題であり、本稿の適応型インフラの議論は、系統連系や蓄電池導入の政策・技術動向に関連する。ただし、具体的な日本市場への示唆は限定的で、技術ロードマップの参考程度。

In the global GX context

Globally, this editorial aligns with the energy transition discourse, emphasizing the need for adaptive and intelligent infrastructure to support decarbonization. It complements ISSB/TCFD frameworks by highlighting the physical infrastructure requirements for climate resilience and clean energy, though it lacks specific policy or disclosure linkages.

👥 読者別の含意

🔬研究者:Provides a broad overview of research directions in adaptive electrification, useful for identifying gaps in grid modernization and energy storage.

🏢実務担当者:Offers insights into emerging technologies for grid resilience and renewable integration, relevant for utility and energy infrastructure planning.

🏛政策担当者:Highlights the importance of investing in adaptive infrastructure to meet decarbonization goals, supporting policy frameworks for grid modernization.

📄 Abstract(原文)

A new era of electrification is reshaping electrical engineering, with adaptive energy infrastructures becoming critical foundations for achieving resilient, low-carbon, and sustainable energy systems. Rapid advances in renewable energy integration, power electronics, distributed energy resources, battery energy storage, electrified transportation, and intelligent energy management are transforming conventional power systems into flexible, interconnected, and resilient infrastructures. This editorial discusses the emerging paradigm of adaptive electrification, in which future electrical networks are expected to dynamically coordinate generation, energy storage, conversion, transmission, distribution, and consumption across increasingly decentralized environments. Beyond traditional objectives of efficiency and reliability, next-generation electrical infrastructures must address growing electricity demand, carbon neutrality, power quality, climate resilience, cyber-physical security, and energy accessibility. The editorial further highlights several promising research directions, including grid-forming power electronics, adaptive microgrids, intelligent battery management, solid-state energy conversion, digitalized power infrastructures, resilient hybrid AC/DC systems, and coordinated human–AI decision-making. Collectively, these technological advances position electrical engineering at the forefront of the global energy transition, emphasizing that future electrification requires not only cleaner energy sources but also adaptive, intelligent, and sustainable infrastructures capable of continuously evolving to meet societal, environmental, and industrial challenges while supporting reliable and equitable access to electricity.

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