世界のエネルギー転換に向けた新興太陽光技術・スマートエネルギーネットワーク・持続可能な投資戦略の統合
Integrating Emerging Photovoltaic Technologies, Smart Energy Networks, and Sustainable Investment Strategies for Global Energy Transition (原題)
Minah-Eeba Winner
🤖 gxceed AI 要約
日本語
本論文は、次世代太陽光技術(ペロブスカイト、量子ドット、有機薄膜等)、分散型エネルギー資源・マイクログリッド・スマートグリッド、持続可能な投資戦略を統合的にレビューする。新興PVは柔軟性・低コスト・軽量性で従来シリコンを上回る一方、投資コストや耐久性・商業化の課題が残ると指摘。技術・政策・資金の融合が脱炭素とSDGs達成を加速すると結論づける。
English
This review integrates emerging photovoltaic technologies (perovskite, quantum dot, organic PV, solar textiles/glass/films), distributed energy resources, microgrids, smart grids, and sustainable investment strategies for the global energy transition. It finds emerging PV offers flexibility, lower cost, and lightweight design advantages over silicon, but faces investment, durability, and commercialization barriers. The paper concludes that combining breakthrough solar tech, intelligent energy management, and effective financing will accelerate decarbonization and sustainable development goals.
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
日本は第6次エネルギー基本計画で太陽光の主力電源化を掲げ、ペロブスカイト太陽電池の国産化・実装を国家戦略とする。本レビューは次世代PVとスマートグリッド、投資戦略の接点を示し、GX推進・グリーン成長戦略における技術実装と資金調達の議論に資する。
In the global GX context
Globally, this review speaks to the technology-finance nexus central to ISSB/TCFD-aligned transition planning and climate finance. It maps how emerging PV and smart grids can be framed within sustainable investment strategies, relevant to CSRD and transition finance debates on financing early-stage clean technologies.
👥 読者別の含意
🔬研究者:次世代PV技術とスマートグリッド、投資戦略を横断する研究動向の整理として有用。
🏢実務担当者:次世代太陽光や分散型電源の導入検討、グリーン投資戦略立案の参考になる。
🏛政策担当者:太陽光技術の商業化障壁と政策・資金支援の必要性を示唆する。
📄 Abstract(原文)
The rising demand for clean and sustainable energy has increased global awareness in renewable energy technologies (RETs) as an answer to energy insecurity, climate change and environmental degradation. This paper examines the position of next-generation smart energy networks, solar energy systems and sustainable investment approaches in enabling global energy transition. The study employs a review-based method by analyzing modern improvements in RETs, distributed energy systems, and emerging photovoltaic (PV) inventions. Particular consideration is given to innovative solar technologies, including quantum dot solar cells, perovskite solar cells, solar textiles, organic photovoltaics, solar skin, solar glass and solar films. The review demonstrates that these emerging technologies offer substantial advantages such as better flexibility, lower production costs, lightweight designs and broader application prospects compared with conventional silicon-based solar cells. The study also highlights the growing importance of distributed energy resources (DER), microgrids, smart grids, and energy storage structures in improving energy access, reliability and sustainability. Though, challenges such as soaring investment costs, technological ambiguity, durability concerns and commercialization barriers reduce large-scale utilization. The paper concludes that attaining a sustainable energy future needs the addition of ground breaking solar technologies, intelligent energy management systems and efficient investment approaches. Solidification of research, helpful policies and financial investment will quicken renewable energy implementation, lessen carbon emissions and support global sustainable development goals.
🔗 Provenance — このレコードを発見したソース
- Zenodo https://zenodo.org/records/23032551first seen 2026-09-30 04:26:44 · last seen 2026-10-02 04:12:20
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