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A reduced-form approach for representing the impacts of wind and solar PV deployment on the structure and operation of the electricity system

机译:一种简化形式的方法,用于表示风能和太阳能光伏部署对电力系统的结构和运行的影响

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摘要

In many climate change mitigation scenarios, integrated assessment models of the energy and climate systems rely heavily on renewable energy technologies with variable and uncertain generation, such as wind and solar PV, to achieve substantial decarbonization of the electricity sector. However, these models often include very little temporal resolution and thus have difficulty in representing the integration costs that arise from mismatches between electricity supply and demand. The global integrated assessment model, MESSAGE, has been updated to explicitly model the trade-offs between variable renewable energy (VRE) deployment and its impacts on the electricity system, including the implications for electricity curtailment, backup capacity, and system flexibility. These impacts have been parameterized using a reduced-form approach, which allows VRE integration impacts to be quantified on a regional basis. In addition, thermoelectric technologies were updated to include two modes of operation, baseload and flexible, to better account for the cost, efficiency, and availability penalties associated with flexible operation. In this paper, the modeling approach used in MESSAGE is explained and the implications for VRE deployment in mitigation scenarios are assessed. Three important stylized facts associated with integrating high VRE shares are successfully reproduced by our modeling approach: (1) the significant reduction in the utilization of non-VRE power plants; (2) the diminishing role for traditional baseload generators, such as nuclear and coal, and the transition to more flexible technologies; and (3) the importance of electricity storage and hydrogen electrolysis in facilitating the deployment of VRE.
机译:在许多缓解气候变化的方案中,能源和气候系统的综合评估模型严重依赖具有可变和不确定发电量的可再生能源技术,例如风能和太阳能PV,以实现电力部门的大幅脱碳。但是,这些模型通常只包含很少的时间分辨率,因此很难表示由电力供需不匹配引起的整合成本。全球综合评估模型MESSAGE已更新,以明确建模可变可再生能源(VRE)部署及其对电力系统的影响之间的权衡,包括对电力削减,备用容量和系统灵活性的影响。这些影响已使用简化形式进行了参数化,这使VRE集成影响可以在区域范围内量化。此外,热电技术已更新为包括基本负载和灵活两种操作模式,以更好地考虑与灵活操作相关的成本,效率和可用性损失。在本文中,将介绍在MESSAGE中使用的建模方法,并评估其在缓解方案中对VRE部署的影响。我们的建模方法成功地再现了与整合高VRE份额相关的三个重要的程式化事实:(1)大大减少了非VRE发电厂的利用率; (2)诸如核能和煤炭等传统基本负荷发电机的作用正在减弱,并且正在向更灵活的技术过渡; (3)蓄电和氢电解在促进VRE部署方面的重要性。

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