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Bridging energy systems and finance: towards integrated national energy planning

エネルギーシステムと金融の橋渡し:統合的国家エネルギー計画に向けて (AI 翻訳)

Naomi Tan

Loughborough University Research Repository (Loughborough University)ジャーナル2026-06-30#エネルギー転換Origin: Global経営インパクト: 資金調達対象セクター: cross_sector
DOI: 10.26174/thesis.lboro.32804258.v1
原典: https://doi.org/10.26174/thesis.lboro.32804258.v1

🤖 gxceed AI 要約

日本語

本論文は、エネルギーシステムモデリングの限界を克服するため、オープンソースの統合評価モデル(IAM)「IMPACCT」を開発・検証。ベトナムを事例に、電力・運輸部門において技術的・社会的・財務的側面を統合した計画立案を実証し、経済的に最適な技術が必ずしも投資家から見て銀行化可能ではないことを示した。

English

This thesis develops and validates IMPACCT, an open-source Integrated Assessment Model for national energy planning. Using a Vietnam case study on power and transport sectors, it demonstrates the value of soft-linking technical, social, and financial dimensions, revealing that economically optimal technologies may not be financially bankable without policy support.

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、エネルギー基本計画やGX推進戦略において、再生可能エネルギー導入と経済性・社会的受容性のバランスが課題となっている。本論文が示す統合的アプローチは、日本の地域エネルギー計画や自治体レベルの意思決定にも応用可能な示唆を含む。

In the global GX context

Globally, the paper addresses a gap in integrated energy planning by incorporating financial viability alongside technical optimization. Its open-source, modular framework is particularly relevant for developing countries and for international climate finance discussions, offering a transparent tool for aligning national energy plans with investor requirements.

👥 読者別の含意

🔬研究者:Methodological contribution: demonstrates soft-linking of open-source tools for integrated assessment, with implications for improving IAM transparency and accessibility.

🏢実務担当者:Provides a practical framework for screening financial viability of energy projects, useful for project developers and utilities in data-scarce environments.

🏛政策担当者:Highlights misalignment between economic and financial viability, urging policy interventions (e.g., guarantees, subsidies) to bridge the gap and attract private investment.

📄 Abstract(原文)

Energy enables economic development, social well-being, and the provision of essential services. As global energy demand continues to grow, particularly in developing countries, the challenge is no longer only to supply energy but to do so sustainably. Achieving this requires careful planning across multiple sectors, in which decisions must balance trade-offs among cost, emissions, social outcomes, and financial feasibility. Energy modelling has emerged as a critical tool in this process, enabling decision-makers to explore future scenarios and formulate policies aligned with national development goals. However, existing modelling approaches have limitations in capturing the complex, interconnected nature of real-world energy systems. This thesis addresses these challenges by developing and validating an accessible, modular, open-source Integrated Assessment Model (IAM) designed to support more coherent and actionable energy planning. Accessibility is defined in the thesis by user familiarity, the availability of no-code or graphical interfaces, and the provision of structured pedagogical resources. This thesis begins by addressing key limitations in current energy system modelling that arise from applying a single technical optimisation tool to national energy planning. It demonstrates that while single technical optimisation models are effective in identifying cost-optimal pathways and enabling scenario analysis, their use in isolation fails to capture critical social and financial dimensions of real-world energy transitions. This highlighted the need for IAMs. However, a review of existing IAMs reveals that, despite methodological diversity, they are predominantly global or multi-regional in scope, techno-economic in focus, lacking representation of social and financial factors, and limited in transparency and accessibility. This reduces their applicability for national-level decision-making, particularly in developing country contexts. To overcome these problems, the thesis develops the Integrated Model for Policy, Actions, and Collaborative Transitions (IMPACCT), a modular framework that soft-links a suite of open-source energy planning tools across demand forecasting for electrified and unelectrified populations, system optimisation, environmental and social evaluation, flexibility assessment, and financial feasibility analysis at the national and utility scales. A structured set of tool-selection criteria ensures applicability in data- and capacity-constrained environments, while the framework enables iterative feedback between components to refine results across technical, social, and financial dimensions. Additionally, the soft-linking approach leverages users' existing familiarity with these tools while enabling the sequential exchange of information between institutional working groups. In parallel, a systematic approach to sectoral data collation for the power and transport sectors is introduced, incorporating standardised classifications, aligned temporal and spatial resolutions, and transparent documentation to support the application of IMPACCT. A traffic-light system and Statistical Data and Metadata eXchange (SDMX) Observation Status codes are also incorporated to communicate data quality and uncertainty. IMPACCT is applied and validated in a national case study of Vietnam, demonstrating its ability to link transport demand, power system expansion, social outcomes, and financial feasibility within a coherent, unidirectional modelling pipeline. Results show that the policy-planned capacity expansion of renewable technologies such as solar and wind is financially viable under current conditions, while biomass and waste-to-energy require targeted policy support. Crucially, the analysis identifies a financial viability warning signal: technologies that appear economically optimal in system-level models may, in practice, be financially non-bankable from an investor perspective without additional structural adjustments. This underscores the value of the framework as a high-level screening tool for detecting early-stage misalignments between economic and financial viability. In addition to highlighting these financial viability gaps, the integrated approach reveals important trade-offs between costs, emissions, and social impacts that are often overlooked in siloed analyses. Overall, the thesis advances methodological, data, and applied contributions to the field of national energy modelling and planning. By demonstrating the feasibility of soft-linking a suite of open-source tools, the research provides a transparent alternative to traditional, siloed modelling approaches. While the Vietnam case study focuses on the power and transport sectors, IMPACCT's modular architecture is designed for broader sectoral expansion, supporting more robust and financially grounded energy transition decision-making.

🔗 Provenance — このレコードを発見したソース

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