産業用太陽光発電投資の経済的持続可能性を評価する政策指向フレームワーク
A policy-oriented framework for assessing the economic sustainability of industrial photovoltaic investments (原題)
D'Adamo, Idiano, Di Leo, Simone, Fabbi, Federico, Gastaldi, Massimo
🤖 gxceed AI 要約
日本語
産業用太陽光発電(PV)投資の経済的持続可能性を評価する政策指向フレームワークを提案。割引キャッシュフロー分析、シナリオ分析、損益分岐点評価、モンテカルロシミュレーションを組み合わせ、イタリアの規制下で1MWの産業用PVシステムに適用。45%の資本助成によりNPVが1190€/kWから1610€/kWに増加し、割引回収期間が7年以上から2年未満に短縮。自家消費が長期的な財務レジリエンスの主要因であることを確認。CO2排出削減の環境価値は約37,000〜63,000€と推定。
English
This study proposes a policy-oriented framework for assessing the economic sustainability of industrial PV investments, combining discounted cash flow analysis, scenario analysis, break-even assessment, and Monte Carlo simulations. Applied to a 1 MW industrial PV system in Italy, results show viability across all scenarios: a 45% capital grant raises NPV from 1190 to 1610 €/kW and cuts discounted payback from over 7 years to under 2 years. Self-consumption is the primary driver of long-term financial resilience, and avoided CO2 emissions are valued at approximately 37,000–63,000 €.
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FIP制度や自家消費型太陽光の普及が進む中、本フレームワークは投資判断や政策評価に有用。特に、自家消費の重要性と助成金の効果を定量的に示すことで、日本の産業用PV導入促進策やSSBJ開示における再生可能エネルギー投資の経済性説明に示唆を与える。
In the global GX context
Globally, this framework offers a replicable method for assessing industrial PV investments under evolving support schemes, relevant to ISSB/CSRD disclosure of transition plans and climate resilience. The emphasis on self-consumption as a key driver of financial resilience provides evidence for policymakers designing effective incentives beyond upfront capital grants.
👥 読者別の含意
🔬研究者:Provides a robust quantitative framework for evaluating PV investment economics under policy uncertainty, applicable to other regions.
🏢実務担当者:Offers a tool to assess industrial PV project viability, highlighting the financial benefits of self-consumption and capital grants.
🏛政策担当者:Demonstrates the effectiveness of capital grants in reducing payback periods and the central role of self-consumption, informing future support scheme design.
📄 Abstract(原文)
Industrial photovoltaic (PV) systems play a strategic role in advancing sustainable production models and supporting the transition toward more resource-efficient industrial processes. As firms seek to reduce electricity price volatility, improve energy efficiency, and comply with climate policies, industrial PV adoption becomes increasingly relevant. However, recent slowdowns in solar deployment and evolving support schemes raise important questions regarding the economic sustainability and policy effectiveness of industrial PV investments. This study develops a policy-oriented framework for the economic assessment of industrial PV investments. The framework combines discounted cash flow analysis with scenario analysis, break-even assessment, and Monte Carlo simulations to account for policy incentives, self-consumption patterns, and market uncertainty, thereby evaluating both profitability and the resilience of investment outcomes. The approach is demonstrated through the application to a 1 MW industrial PV system within the Italian regulatory context. Results demonstrate that industrial PV investments are economically viable across all scenarios. A 45% capital grant raises NPV from 1190 €/kW to 1610 €/kW and reduces the discounted payback period from more than seven years to less than two years, while self-consumption emerges as the primary driver of long-term financial resilience. Risk analysis confirms the robustness of investment performance under adverse conditions. Monetising the avoided CO2 emissions reveals an environmental value of approximately 37,000–63,000 €. The findings provide insights for policymakers and industrial stakeholders, highlighting the central role of self-consumption in strengthening the long-term viability of industrial PV systems under evolving market conditions, while current support mechanisms primarily reduce upfront investment costs.
🔗 Provenance — このレコードを発見したソース
- base https://hdl.handle.net/11573/1772300first seen 2026-09-01 12:07:32
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