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Endogenous implementation of technology gap in energy optimization models—a systematic analysis within TIMES G5 model
Authors:Ullash K. Rout,Ulrich Fahl,Uwe Remme,Markus Blesl,Alfred Voß  
Affiliation:1. Research Institute of Innovative Technology for the Earth (RITE), 9-2 Kizugawadai, Kizugawa-shi, Kyoto 619-0292, Japan;2. Institut für Energiewirtschaft und Rationelle Energieanwendung (IER), Universität Stuttgart, Heßbrühlstr. 49a, 70565 Stuttgart, Germany
Abstract:Evaluation of global diffusion potential of learning technologies and their timely specific cost development across regions is always a challenging issue for the future technology policy preparation. Further the process of evaluation gains interest especially by endogenous treatment of energy technologies under uncertainty in learning rates with technology gap across the regions in global regional cluster learning approach. This work devised, implemented, and examined new methodologies on technology gaps (a practical problem), using two broad concepts of knowledge deficit and time lag approaches in global learning, applying the floor cost approach methodology. The study was executed in a multi-regional, technology-rich and long horizon bottom-up linear energy system model on The Integrated MARKAL EFOM System (TIMES) framework. Global learning selects highest learning technologies in maximum uncertainty of learning rate scenario, whereas any form of technology gap retards the global learning process and discourages the technologies deployment. Time lag notions of technology gaps prefer heavy utilization of learning technologies in developed economies for early reduction of specific cost. Technology gaps of any kind should be reduced among economies through the promotion and enactment of various policies by governments, in order to utilize the technological resources by mass deployment to combat ongoing climate change.
Keywords:Technology gap   Global learning   Uncertainty in learning rates
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