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BU235|Quantitative Standing Model for Energy Transition under B_U B_U 体系下能源转型的量化 standing 模型:C_fric、Xi_res、BBC、博弈支付与权重 校准

BU235|B_Uの下でのエネルギー移行のための定量スタンディングモデル:C_fric、Xi_res、BBC、ゲーム利得と重み校正 (AI 翻訳)

Dedong Zhan

Zenodo (CERN European Organization for Nuclear Research)プレプリント2026-06-30#エネルギー転換対象セクター: cross_sector
DOI: 10.5281/zenodo.21066921
原典: https://doi.org/10.5281/zenodo.21066921

🤖 gxceed AI 要約

日本語

BU235は、エネルギー転換経路を摩擦コスト(C_fric)、未解決残余(Xi_res)、行動・制度抵抗(BBC)、ゲーム調整後の利得を含む多基準で評価する定量モデルを提案する。強い持続可能性を達成するためには、単なる排出削減や再生可能エネルギー導入率だけでなく、資産廃棄、系統安定性、社会的適応などを総合的に考慮した「弱持続経路」が重要である。

English

BU235 proposes a quantitative standing model for energy transition paths that evaluates them based on friction costs (C_fric), unresolved residuals (Xi_res), behavioral/institutional resistance (BBC), and game-adjusted payoffs. It argues that true sustainability requires a 'weak-persistent' path that accounts for stranded assets, grid stability, and social adaptation, rather than aggressive but fragile decarbonization.

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

本論文はエネルギー転換における経路評価の枠組みを提供し、日本のSSBJや移行計画策定においても、可視化されない摩擦や残余リスクを考慮した評価に示唆を与える可能性がある。

In the global GX context

This paper provides a quantitative framework for evaluating energy transition paths, relevant to global transition finance and ISSB-aligned reporting by emphasizing comprehensive cost and risk assessment beyond emissions reduction.

👥 読者別の含意

🔬研究者:A novel framework for modeling energy transition trade-offs, useful for developing more robust transition scenarios.

🏢実務担当者:Provides a checklist of hidden costs (friction, residuals) to consider when designing corporate transition plans.

🏛政策担当者:Suggests that policy design should account for behavioral resistance and infrastructure coordination costs to avoid transition failure.

📄 Abstract(原文)

BU235 establishes Quantitative Standing Model for Energy Transition under B_U as the quantitative audit layer for energy-system regime switching. Its central purpose is to move energy transition from a policy slogan, moral narrative, or visible decarbonization target into a settlement-auditable transition path. The file focuses on the high-sunk-cost and high-residual shift from fossil-dominant systems to renewable systems, and from centralized generation to distributed energy structures. Its core judgment is that energy transition becomes admissible only when long-term sustainability, security, reliability, affordability, and economic gains remain positive after friction costs, residual ranks, behavioral resistance, and multi-agent game payoffs are fully counted. The file defines the object of evaluation as the transition path π, rather than any single metric such as emissions reduction, renewable penetration, levelized cost, investment volume, or installed capacity. These indicators are useful but incomplete. Under B_U, a transition path must be judged under real infrastructure, political economy, grid constraints, capital constraints, social adaptation limits, and institutional feedback. A path that looks green at the visible layer may still fail standing if it hides stranded assets, grid instability, employment shock, policy lock-in, user resistance, security exposure, or unresolved coordination costs. BU235 extends the p^w audit grammar into the energy domain. It introduces an energy-specific C_fric model, a ranked Xi_res residual field, a BBC behavioral and institutional resistance coefficient, a game-adjusted payoff interface, and a calibrated standing formula. This allows the evaluator to distinguish a genuine weak-persistent transition from a green-transition illusion. A weak-persistent path does not simply maximize renewable speed; it preserves continuity, manages reserve capacity, pays infrastructure costs, stages retirement, absorbs social residuals, and maintains energy standing throughout the transition. The model treats C_fric as the total transition friction: asset retirement, grid reconstruction, storage investment, retraining, policy redesign, coordination overhead, compensation, reserve maintenance, infrastructure financing, and institutional adaptation. Xi_res ranks the unresolved residuals that can amplify during transition: intermittency, transmission bottlenecks, storage insufficiency, stranded assets, employment disruption, supply-chain exposure, policy rigidity, regional inequality, security vulnerability, and market instability. Residual ranking is not a narrative inconvenience; it is a settlement load. A key contribution is the BBC coefficient. BU235 makes explicit that energy systems are used, financed, regulated, and defended by human institutions. Even technically superior energy structures can fail if households reject pricing signals, firms delay investment, regions resist job loss, grid operators lack operational confidence, or policymakers avoid short-term accountability. BBC therefore prevents behavioral and institutional drag from appearing later as unexplained “implementation failure.” The file also formalizes the game-theoretic layer. Energy transition is a multi-agent game involving governments, firms, users, grid operators, fossil incumbents, renewable firms, environmental constraints, markets, and regulators. A transition path gains stability only when these actors can reach payoff configurations that preserve positive standing rather than amplify defensive strategies and residual conflict. BU235 compares an aggressive transition path with a weak-persistent path. The aggressive path rapidly retires fossil assets and assumes grid reconstruction and social adaptation will follow; it tends to concentrate C_fric, amplify Xi_res, increase BBC, destabilize GamePayoff, and create fragile or negative standing. The weak-persistent path phases retirement, preserves reserve capacity, invests in storage and grid control, compensates affected regions, retrains workers, and validates distributed resources in stages; it lowers effective friction and preserves a positive weak-persistent evolution channel. The final thesis is direct: energy transition becomes real only when it can pay its own movement. A path that counts renewable potential while hiding stranded assets, grid instability, employment shock, policy lock-in, behavioral resistance, and security residuals is not a transition with standing; it is an unpriced projection. BU235 forces the transition path onto the settlement surface and asks one hard question: after ΔPotential, C_fric, Xi_res, BBC, and game-adjusted payoffs are all counted, does the transition still stand?

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