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A multi-actor perspective on multi-objective regional energy system planning

机译:一种多actor对多目标区域能源系统规划的视角

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摘要

Renewable energy investment is a complex process where multiple actors are often involved with their own, sometimes conflicting, interests. Here we propose a multi-actor multi-objective regional energy system planning approach to help actors gain mutual understanding regarding each other's optimal investment wishes, in order to advance the planning process. This approach combines two models: Multi-Objective Optimization (MOO) and Technique for Order of Preference by Similarity to Ideal Solution (TOPSIS). The approach uses illustrative objectives and actors which is then applied to the greater Amsterdam region to showcase its usage and strength. The four chosen objectives, i.e. total Capital Expenditure, total Operation & Maintenance costs, land-use and visually impacted area are minimized simultaneously to obtain a set of Pareto-optimal solutions. These solutions are then evaluated for governments, funders and local residents with different preferences using TOPSIS. The case study shows that our approach is unique and useful when multiple actors have to decide together upon the energy investment capacities. It is able to provide quantitative and optimal decision-aiding from the multi-actor perspective and generate also sub-optimal yet acceptable solutions for all the actors. Based on our approach, the impacts of policy options can be revealed from the actors' perspectives as well.
机译:可再生能源投资是一个复杂的过程,其中多个演员通常与自己的,有时相互矛盾的利益。在这里,我们提出了一种多演员的多目标区域能源系统规划方法,以帮助演员对彼此的最佳投资愿望相互了解,以提高规划过程。这种方法结合了两种型号:多目标优化(MOO)和技术的优先顺序与理想解决方案(TOPSIS)。该方法使用说明性目标和演员,然后将其应用于大阿姆斯特丹地区以展示其使用和强度。四个选定的目标,即总资本支出,总操作和维护成本,土地使用和视觉撞击区域是最小化的,以获得一套帕累托最优解决方案。然后使用TOPSIS对各国政府,资助者和当地居民进行评估这些解决方案。案例研究表明,当多个演员必须在能量投资能力结束时,我们的方法是独特的,并且有用。它能够提供从多功能师的角度来看定量和最佳决策,并为所有演员生成次优且可接受的解决方案。根据我们的方法,可以从演员的角度揭示政策选择的影响。

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