← 論文一覧に戻る

太陽光パネルの開発・展望・課題・応用に関する研究:グローバルおよびローカルな視点

Study on Development, Prospects, Challenge, and Applications of Solar Panel: Global and Local Perspective (原題)

*Dr Hossain K A, Khandakar Anika Akhter, Khandakar Adiba Akhter, Khandakar Shaffat Akhter, Dr. Mohammad Khalilur Rahman

Zenodoプレプリント2026-09-28#再生可能エネルギーOrigin: Global経営インパクト: コスト削減対象セクター: power
DOI: 10.5281/zenodo.23057904
原典: https://zenodo.org/records/23057904
📄 PDF

🤖 gxceed AI 要約

日本語

本レビューは太陽光発電、特にフレキシブルパネルの材料・製造・技術・応用・市場を概観する。世界の太陽光容量はコスト低下と政策目標で急増し、ペロブスカイトや両面パネルが効率を高める。間欠性対策の蓄電・系統投資やポリシリコン等の供給網課題も指摘。BIPV・浮体式・アグリボルタイクスなど応用を整理し、空間制約のある産業施設でのフレキシブルパネル活用の可能性を示す。

English

This review surveys solar PV, focusing on flexible panels' materials, manufacturing, technology, applications, and market. Global capacity has surged on falling costs and climate targets, with perovskite and bifacial gains. It flags storage/grid investment and supply-chain bottlenecks, and outlines BIPV, floating solar, and agrivoltaics, highlighting flexible panels for space-constrained industrial sites.

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

日本は再生可能エネルギー導入拡大と第7次エネルギー基本計画で太陽光の主力電源化を目指す。屋根・壁面など空間制約の大きい国内産業施設ではフレキシブルパネルが有効な選択肢となり得る。ただし本稿は開示・会計・政策制度には踏み込んでおらず、GX開示実務への直接的な示唆は限定的。

In the global GX context

Global solar deployment is central to ISSB/CSRD transition planning and corporate renewable procurement. This review adds a technology-application lens—flexible PV for industrial sites—useful for decarbonization roadmaps, though it does not engage disclosure frameworks or carbon accounting directly.

👥 読者別の含意

🔬研究者:フレキシブル太陽電池の材料・製造・応用に関する技術動向の整理として参照可能。

🏢実務担当者:空間制約のある工場・倉庫でのフレキシブルパネル導入検討の基礎情報になる。

🏛政策担当者:太陽光普及における系統・蓄電投資と供給網リスクの政策的含意を再確認できる。

📄 Abstract(原文)

Solar power is a rapidly growing renewable energy source that converts sunlight into electricity using photovoltaic (PV) cells. Global solar capacity has grown exponentially over the past decade, driven by plummeting technology costs and aggressive government climate targets. China, the United States, and the European Union lead in total installed capacity. Continued efficiency improvements in perovskite solar cells and bifacial panels promise even higher energy yields. Solar is projected to become the largest source of global electricity generation in the coming decades. Intermittent generation requires heavy investment in battery storage and grid modernization. Supply chain bottlenecks for critical materials like polysilicon, silver, and silicon remain a concern. Beyond utility-scale solar farms, applications include building-integrated photovoltaics (BIPV), floating solar farms on reservoirs, and agrivoltaics (combining farming with solar panels). However, today flexible solar panels offer a revolutionary approach to overcoming structural hurdles. Unlike their rigid counterparts, flexible solar panels are lightweight and can be seamlessly integrated onto various surfaces, including curved and uneven ones. This adaptability allows industrial facilities to transform previously unusable spaces into productive energy-generating areas. Industrial facilities often struggle with space constraints and the logistical challenges of installing traditional solar panels. Roof structures, facades, and other surfaces may not support the weight and rigidity of conventional panels, leading to underutilization of potential solar energy resources. Flexible solar panels stand out from their rigid counterparts due to their unique construction and technology. This reviews paper will describe and evaluate the important information, materials, manufacturing process, technology, advantages, applications, market, and transformation of solar technology in general and flexible solar panel in particular to meet the global energy requirement as clean energy source to mitigate global warming and climate issues.

🔗 Provenance — このレコードを発見したソース

🔔 こうした論文の新着を逃したくない方は キーワードアラート に登録(無料・3キーワードまで)。

gxceed は公開メタデータに基づく研究支援データセットです。要約・翻訳・解説は AI 支援で生成されています。 最終的な解釈・検証は利用者が原典資料に基づいて行うことを前提とします。