Mohammad Fazle Rabbi
Sustainable energy transitions face systemic barriers from technological evolution and institutional inertia. This study develops an integrated modelling framework combining System Dynamics, Evolutionary Game Theory, and Multi-Level Perspective to analyse co-evolutionary dynamics between innovation capacity, technology competition, and institutional resistance across three coupled processes: innovation capacity accumulation through R&D feedback loops, competitive technology dynamics with institutional resistance effects, and cross-scale niche-regime interactions. Model validation employed out-of-sample testing against EU renewable energy deployment data (2010–2024), with systematic recalibration improving performance from severe predictive failure (R²=−3.445) to strong aggregate fit (R²=0.906, RMSE=0.0258) and high-fidelity disaggregated performance for Solar PV (R²=0.965) and offshore wind (R²=0.920). Holdout performance (2019–2024, R²=−0.101) reflects REPowerEU-driven overprediction, reported as a model boundary condition. Recalibration reduced institutional resistance by 37.5% and increased innovation coupling by 47%, reflecting post-Paris Agreement evolution. Sensitivity analysis, confirmed by multicollinearity diagnostics (maximum VIF=2.3; primary parameters γ and ζ achieving VIF=1.2 and 1.1 respectively), reveals that regime resistance independently accounts for 67% and innovation coupling for 58% of transition outcome variance. Threshold analysis identified a critical readiness ratio (Rg/Rc=1.40 ± 0.15) marking the policy-dependent to self-sustaining transition: Solar PV 2024 (ratio=1.35) requires 15–20% further cost reductions, while offshore wind 2024 (ratio=1.52) has achieved autonomous expansion. Maintaining constant effectiveness requires a 60% stringency escalation (P = 50% to P = 80%) as institutional alignment strengthens from Ar= 0.20 to Ar= 0.60. Scenario analysis confirms technology-optimistic pathways (72% adoption, ROI=2.4) cross threshold seven years earlier than baseline scenarios (55% adoption, ROI=1.5) through simultaneous institutional reform and innovation acceleration.