A methodology to assess the impact of 2030 EU climate and energy targets on the national power systems: The Italian case

F. Lanati, A. Gelmini, M. Benini, M. Gallanti
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Abstract

On October 23rd, 2014 the European Council confirmed the targets for the new 2030 climate and energy policy. In this paper we present a methodology to assess the impact of the achievement of such targets on the development and on the operation of the power system, to determine the necessary investments on infrastructures by means of a cost-benefit analysis based on simulations and to estimate the effects on the electricity cost. The methodology has been applied to the Italian case by RSE, starting from a scenario, developed by ENEA, where the Italian energy system in 2030 achieves a 36% reduction of CO2 emissions compared to 2005 levels, in line with the EU targets. Using s-MTSIM, a simulation model of the Italian power system developed by RSE, the main criticalities (congestion, overgeneration, energy not supplied, etc.) have been identified and quantified. Then, the measures to upgrade the transmission and distribution networks and to increase the flexibility of the generation set, needed to mitigate the impact of such critical issues, have been valued on the basis of a cost/benefit analysis. Finally, the amount of the investments needed and the impact on electricity cost for end users have been estimated.
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评估2030年欧盟气候和能源目标对国家电力系统影响的方法:意大利案例
2014年10月23日,欧洲理事会确认了新的2030年气候和能源政策的目标。在本文中,我们提出了一种方法来评估实现这些目标对电力系统的发展和运行的影响,通过基于模拟的成本效益分析来确定必要的基础设施投资,并估计对电力成本的影响。该方法已被RSE应用于意大利的案例,从ENEA开发的一个场景开始,其中意大利能源系统在2030年实现二氧化碳排放量比2005年减少36%,符合欧盟的目标。利用RSE开发的意大利电力系统仿真模型s-MTSIM,确定并量化了主要的临界问题(拥塞、发电过剩、能源不供应等)。然后,在成本/效益分析的基础上对改善输配电网络和增加发电机组灵活性的措施进行了评价,这些措施是减轻这些关键问题的影响所必需的。最后,对所需的投资金额和对最终用户电力成本的影响进行了估计。
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