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Multilateral power grid interconnection for complementary utilization of energy in Northeast Asia

机译:多边电网互联互为东北亚能源的互补利用

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Confronting environmental problems and unbalanced geographical distribution of energy resources and load centers, grid interconnection has been regarded as a promising approach to achieve complementary and efficient utilization of diverse energy resources. This paper employs linear programming techniques to investigate the environmental and economic benefits of multilateral power grid interconnection in Northeast Asia. Considering temporal and geographical characteristics of load curves and renewable energy outputs in different regions, the proposed multilateral power grid interconnection model minimizes single-year overall system costs under energy resource and system operation constraints. The model not only optimizes generation and grid extensions, but also determines generation schedule and cross-border power exchange flows. Four scenarios are setup for the year 2030 to investigate the influence of interconnection operation modes. Simulation results prove the benefits of grid interconnection on carbon emission reduction and cost saving. Besides, hourly variant operation mode demonstrates the most satisfying performance.
机译:面对环境问题以及能源和负载中心的地理分布不平衡,电网互连被认为是实现各种能源互补和有效利用的一种有前途的方法。本文采用线性规划技术来研究东北亚多边电网互连的环境和经济效益。考虑到不同地区的负荷曲线和可再生能源输出的时间和地理特征,建议的多边电网互连模型将在能源和系统运行约束下的单年度总体系统成本降至最低。该模型不仅优化了发电和电网扩展,还确定了发电计划和跨境电力交换流程。为2030年设定了四种方案,以研究互连操作模式的影响。仿真结果证明了电网互联对减少碳排放和节省成本的好处。此外,每小时变化的操作模式显示出最令人满意的性能。

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