太陽光屋根からスマートエネルギーコミュニティへ:スイス住宅協同組合における柔軟性ポテンシャルの探究
From solar roofs to smart energy communities: exploring flexibility potential in a Swiss housing cooperative (原題)
Nina Boogen, Devon Wemyss, Yousra Sidqi, Tania B. López-García, Selin Yılmaz, Guillermo Borragán
🤖 gxceed AI 要約
日本語
スイスの住宅協同組合を対象に、屋根上太陽光の自家消費と需要側柔軟性のポテンシャルを混合手法で検証する研究。技術経済モデリングと社会科学分析を組み合わせ、P2P電力共有の経済効果を試算。NESTでの実証パイロットを通じ、手動柔軟性の体験が自動化技術受容に与える影響を検証する。集合的ガバナンスが共有エネルギー戦略の実装コストを下げる可能性を探る。
English
This study examines demand-side flexibility and rooftop solar self-consumption in Swiss housing cooperatives using mixed methods. It combines techno-economic modeling of peer-to-peer electricity sharing with social-science analysis of behavioral flexibility. A real-world pilot at NEST tests whether hands-on manual flexibility shifts residents' attitudes toward automation, before scaling to cooperatives with collective governance.
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
日本では集合住宅・団地での地域エネルギー管理や電力の地産地消に関心が高まっており、協同組合型ガバナンスと需要側柔軟性の実証は、日本の地域新電力・ZEH-M政策や住民参加型の脱炭素モデルを考える上で示唆に富む。
In the global GX context
As ISSB/CSRD push firms toward Scope 3 and value-chain energy data, community-level flexibility and P2P sharing models offer a bottom-up complement to corporate disclosure. The cooperative governance angle adds a social-institutional dimension often missing from global transition-finance debates.
👥 読者別の含意
🔬研究者:需要側柔軟性と集合的ガバナンスを統合した混合手法の設計例として参考になる。
🏢実務担当者:集合住宅・施設での太陽光自家消費とテナント参加型の柔軟性運用の実装ヒントを得られる。
🏛政策担当者:地域エネルギーコミュニティの制度的枠組みとインセンティブ設計を検討する際の参考事例。
📄 Abstract(原文)
Extended abstract 5-050-26 Housing cooperatives represent a unique institutional model for accelerating the energy transition through collective action and democratic governance. Their organizational structure combining collective ownership, resident participation, and long-term planning makes them logical starting points for local energy communities. In German-speaking Switzerland, 10–20% of urban populations live in such cooperatives. We investigate how they can optimize energy use and unlock flexibility potentials within emerging regulatory frameworks for local energy communities in Switzerland. Previous surveys with cooperative residents reveal a strong interest in self-consumption of rooftop solar power and a willingness to shift dishwasher and washing machine use to capture this local power. We employ a mixed-methods approach combining technical-economic modeling with with social science analysis on behavioural flexibility. We model peer-to-peer electricity sharing scenarios to quantify economic benefits while surveys with redidents identify demand-side flexibility opportunities. A key part of this project is a real-world flexibility intervention, beginning with a pilot at NEST, a modular research building in Eastern Switzerland where new technologies are tested under real conditions. Working with two NEST residences housing guest researchers provides an ideal environment to prototype our intervention before scaling to a larger housing cooperative. Following a co-design workshop (April 2026), we implement a 10-day flexibility challenge in summer 2026. Participants experience manually-controlled flexibility, receiving text messages with specific guidance such as «tomorrow it's sunny, so start your washing machine during lunch time» to actively shift appliance use and maximize solar self-consumption. This hands-on experience serves a dual purpose: quantifying actual flexibility potential under realistic conditions while potentially influencing participants' attitudes toward both manual flexibility practices and automated control systems. We hypothesize that experiencing manual flexibility's effort may increase willingness to adopt automation technologies that maintain flexibility with reduced user burden. Following the NEST pilot, we scale the intervention to housing cooperatives, where collective governance structures offer unique advantages for implementing shared energy strategies while reducing transaction costs. However, critical questions remain around incentive alignment, decision-making processes, cost/benefit distribution, and equitable tenant participation – factors essential for assessing the scaling potential of cooperative-based energy communities. Read the full abstract. Download presentation.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.66506/essp.124first seen 2026-09-25 04:38:14
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