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Implementation of Integration Problem for Baltic Energy Systems into Continental Europe Energy

机译:波罗的海能源系统对大陆欧洲能源的整合问题

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With the restoration of the Baltic States independence, they faced problems both of a political and economic nature. First of all, these problems were caused by the need to strengthen the energy independence of the Baltic States, since historically its power systems worked in synchronous mode with the United power system of Russia, depending on its mode of operation. It was the Baltic States' desire to eliminate energy dependence on a single energy supplier that determined their desire to integrate their transmission networks into the electrical system of continental Europe. The solution to this problem allows the Baltic States to strengthen their energy independence and become a full participant in the electricity market of continental Europe. Aspects of integration of the Baltic power systems with the power systems of continental Europe are considered. There are made the analysis of the current state and development of the infrastructure for the Baltic States electric systems, the development of electricity trade between the Baltic States and continental Europe, the problems of shortage and increase of base capacity in the region. The characteristics of the energy and climate national plans published by the Baltic States are given, which consider their intentions to develop renewable energy production for the period up to 2030, which provide for a significant increase in electricity production due to wind farms. The possibilities of reducing the risks of power supply reliability to consumers when there is insufficient balance of supply and demand to maintain the power balance are considered.
机译:随着波罗的海国家独立的恢复,他们面临着政治和经济性质的问题。首先,这些问题是由于需要加强波罗的海国家的能量独立性,因为历史上,其电力系统与俄罗斯联合电力系统的同步模式工作,具体取决于其操作模式。波罗的海国家希望消除对单一能源供应商的能源依赖,确定他们希望将其传输网络集成到大陆欧洲电气系统中。解决这个问题的解决方案允许波罗的海国家能够加强能源独立性,并成为大陆电力市场的全部参与者。考虑了波罗的电力系统与大陆欧洲电力系统集成的方面。对波罗的海国家电力系统的基础设施进行了分析,开发了波罗的海和大陆欧洲之间的电力贸易,该地区基础产能的问题。给出了波罗的海国家发布的能源和气候国家计划的特点,这考虑了他们的意图,为2030年开发可再生能源产量,这提供了由于风电场因电力生产而大幅增加的电力产量。考虑了在不足的供需平衡时降低消费者的电力供应可靠性风险的可能性,以保持电力平衡。

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