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Electricity system sustainability transitions: An integrated methodology

机译:电力系统可持续发展过渡:一种综合方法

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The electricity system transition into a sustainable state depends on several factors-energy resource and technology choices, economic and environmental targets, human and social development needs. To achieve such a transition, the policy makers need to know how sustainability of the electricity system is affected by these factors and to make optimal choices of technology, resource, size, location, etc. There are synergies and tradeoffs amongst these choices. We first discuss a multi-dimensional and hierarchical framework to assess the sustainability of electricity system. Secondly, we propose an optimization-based modelling framework to integrate the macro model of national electricity system sustainability with the bottom-up reference electricity system. This is being done with multi-attribute technology characterization across entire electricity supply chain. We elaborate how our approach explicitly captures the synergies and the tradeoffs among investment decisions, and can be used to prioritize optimal technology solutions for electricity system sustainability transition.
机译:电力系统转向可持续国家取决于几个因素 - 能源资源和技术选择,经济和环境目标,人类和社会发展需求。为实现这种转型,政策制定者需要了解电力系统的可持续性受这些因素的影响,并使技术,资源,大小,位置等最佳选择。这些选择之间存在协同作用和权衡。我们首先讨论多维和分层框架,以评估电力系统的可持续性。其次,我们提出了一种基于优化的建模框架,将国家电力系统可持续性的宏模型与自下而上的参考电力系统集成在一起。这是通过整个电力供应链的多属性技术表征完成的。我们详细说明了我们的方法如何明确捕获投资决策之间的协同作用和权衡,并可用于优先考虑电力系统可持续性转型的最优技术解决方案。

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