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Hierarchical duality-based planning of transmission networks coordinating active distribution network operation

机译:基于分层二元性的传输网络规划协调主动分配网络操作

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摘要

The active distribution network becomes more stochastic due to high penetration of renewable energy sources, and it can transfer surplus power for transmission needs. If the distribution optimization problem collaborates with the conventional transmission expansion formulation, the coordination can also postpone the investment decisions for the transmission network, not only optimize the operation of the entire power system. In view of these, this paper presents a bi-level hierarchy transmission expansion formulation coordinating distribution networks. The upper level of the hierarchical decision-making framework corresponds to the objective and constraints of the transmission network, whereas the lower level relates to the distribution perspective. An approximation technique is used to make the constraints of the distribution network linear, which guarantees that the proposed bi-level program can be solved using the duality-based approach. Numerical tests carried out on two transmission-distribution integration networks demonstrate the effectiveness and high performance of the proposed hierarchical duality-based model to accommodate renewable energy. In addition, sensitivities of the transmission investment decisions are analysed in terms of externalities in transmission and distribution networks. Compared with conventional isolated optimization, results show that the total costs of T24D9 and T38D3 by the proposed hierarchical coordinated optimization can respectively reduce by 34.38 M$ and 382.23 M$. So the economic benefits are remarkable, and the proposed optimization is reasonable and valuable.
机译:由于可再生能源的高渗透,主动分配网络变得更加随机,并且它可以转移剩余动力以进行传输需求。如果分配优化问题与传统传输扩展配方合作,则协调也可以推迟传输网络的投资决策,不仅优化整个电力系统的操作。鉴于这些,本文介绍了双级层次传输扩展配方协调分配网络。分层决策框架的上层对应于传输网络的目标和约束,而较低级别涉及分布透视图。近似技术用于制造分发网络线性的约束,这保证了所提出的双级程序可以使用基于二元的方法来解决。在两个传输分配集成网络上执行的数值测试证明了所提出的基于分层二元性的模型的有效性和高性能,以适应可再生能量。此外,在传输和分配网络中的外部性方面分析了传输投资决策的敏感性。与传统的孤立优化相比,结果表明,T24D9和T38D3的总成本通过所提出的分层协调优化可以分别减少34.38米至382.23米。因此,经济效益显着,所提出的优化是合理和有价值的。

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