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Towards a carbon-neutral regional energy system: Final report of the PEAK Project

カーボンニュートラルな地域エネルギーシステムに向けて:PEAKプロジェクト最終報告書 (AI 翻訳)

Hannula, Milla, Pinilla De La Cruz, Giovanna Andrea, Laaksonen, Hannu, Rahman, Md Atiqur, Alam, Md Ashfaqul, Enell-Nilsson, Mona, Mäenpää, Antti, Syrjälä, Piritta, Rabetino, Rodrigo, Ali, Wajahat

Zenodoプレプリント2026-04-30#エネルギー転換Origin: EU
DOI: 10.5281/zenodo.19916651
原典: https://zenodo.org/records/19916651
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🤖 gxceed AI 要約

日本語

本報告書は、フィンランドのオストロボスニア地域におけるカーボンニュートラルなエネルギーシステムの構築を目指したPEAKプロジェクトの成果をまとめたものである。再生可能エネルギーのポテンシャル評価、系統柔軟性の分析、ステークホルダーとの協働を通じて、需要応答や蓄電などの柔軟性対策が系統拡張に代わる費用対効果の高い選択肢であることを示した。

English

This final report presents results from the PEAK project, which aimed to develop a carbon-neutral regional energy system in Ostrobothnia, Finland. By combining techno-economic analysis, stakeholder engagement, and business model development, the project identified flexibility solutions such as demand response and energy storage as cost-effective alternatives to grid expansion. The findings provide concrete insights for regional energy transition.

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

日本の地域エネルギー計画においても、系統制約や社会的受容性が課題となる中、本報告書の柔軟性対策やステークホルダー協働のアプローチは参考になる。特に、自治体が主導する地域エネルギービジョンの策定に活用できる具体的な手法を提供している。

In the global GX context

This report contributes to the global discussion on regional energy system decarbonization by demonstrating a participatory, multi-disciplinary approach. It offers empirical evidence on the role of flexibility in enabling renewable integration and avoiding costly grid upgrades, relevant to regions worldwide facing similar challenges.

👥 読者別の含意

🔬研究者:A case study on regional energy transition with methods for assessing renewable potential and flexibility options.

🏢実務担当者:Practical insights on implementing flexibility solutions like demand response and storage in regional energy planning.

🏛政策担当者:Highlights regulatory barriers and the need for supportive policies to enable regional flexibility markets.

📄 Abstract(原文)

This final report presents the key results of the PEAK – Development of the regional energy system in Ostrobothnia – project, carried out by the University of Vaasa and Aktion Österbotten rf between May 2024 and April 2026. The project aimed to support the development of a carbon‑neutral regional energy system in Ostrobothnia by integrating technical, societal, and business perspectives. The transition towards carbon neutrality, increasing electrification, and the growing share of renewable energy pose significant challenges for regional energy systems, particularly in electricity distribution networks. Although Ostrobothnia has substantial renewable energy potential, its utilization is constrained by grid capacity, system flexibility, regulatory conditions, and social acceptance. At the same time, regions play an increasingly important role in strengthening energy self‑sufficiency, security of supply, and system resilience. The PEAK project responded to these challenges by producing region‑specific analyses and development‑oriented insights to support informed decision‑making and collaboration. The project combined techno‑economic analysis of renewable energy potential and grid flexibility with stakeholder engagement and business model development. Key activities included mapping local renewable resources, analyzing flexibility solutions such as demand response and energy storage, identifying opportunities and barriers for regional energy system development, and co‑creating tools to support dialogue and awareness at the community level. In addition, emerging business models for regional flexibility services were explored, alongside regulatory, resource, and competence‑related constraints affecting their implementation. The results highlight flexibility as a key enabler for integrating renewable energy and optimizing existing grid infrastructure, often offering cost‑effective alternatives to traditional grid expansion. Overall, the PEAK project provides concrete knowledge, tools, and insights that support the long‑term decarbonization of regional energy systems and strengthen the role of regions as active drivers of the energy transition.

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