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Optimization of continental power exchange under the framework of global energy interconnection

机译:全球能源互连框架下的大陆电力交换优化

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The global energy interconnection is a promising way to achieve sustainable use of global energy. A quantitative estimate of inter-continental power exchange can provide helpful guidance for implement of the global energy interconnection. This paper proposes a method based on time sequence simulation technology to optimize continental power exchange under the framework of global energy interconnection. An optimization model is proposed to maximize the global renewable energy power generation with considering the constraints of global power balance, global system spinning reserve, continental transmission capacity limit, unit power generation limit, limits of renewable energy curtailment rate, et al. To cope with the extremely large and complicated global power network, the aggregation method is applied to simplify the global power grid interconnection. The aggregated continental annual wind, solar power and load are incorporated into the optimization model as inputs. Hourly power generation of renewable, fossil, nuclear energy and continental exchanged power are then optimized. Case studies are conducted to obtain the optimal continental power exchange based on the data in 2016, and the influence of inputs on continental exchange power are quantified. Testing results verify the effectiveness of the proposed method.
机译:全球能源互连是实现全球能源可持续利用的一种有前途的方式。洲际间电力交换的定量估计可以为实施全球能源互连提供有益的指导。提出了一种基于时序仿真技术的全球能源互联框架下的大陆电力交换优化方法。考虑到全球电力平衡,全球系统旋转储备,大陆输电容量限制,单位发电限制,可再生能源削减率的限制等,提出了一种优化模型,以使全球可再生能源发电最大化。为了应对极其庞大和复杂的全球电网,采用聚合方法来简化全球电网互连。大陆年风,太阳能和负荷的总和作为输入纳入优化模型。然后优化可再生能源,化石能源,核能和大陆交换电力的每小时发电量。根据2016年的数据进行案例研究,以获得最佳的大陆电力交换,并量化了输入对大陆交换电力的影响。测试结果验证了该方法的有效性。

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