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A Transactive Energy Framework for Coordinated Energy Management of Networked Microgrids With Distributionally Robust Optimization

机译:具有分布式鲁棒优化的网络微电网协调能源管理的无功能源框架

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Networked microgrids (MGs) are considered as an emerging grid design for the future distribution system (DS). The coordination of the networked MGs is critical in order to further enhance the operation efficiency and reliability of the system. In this paper, a transactive energy (TE) framework is proposed for the coordinated energy management of networked MGs in DS. Instead of direct coordination signals and fixed pricing schemes, the distribution network operator (DNO) organizes a transactive market with the MGs to coordinate the energy management in the operation. Further, a distributionally robust optimization (DRO)-based algorithm is developed to provide a robust solution of the detailed scheduling decisions in the proposed TE framework under uncertainty without being too conservative. Case studies with the proposed framework were conducted with the IEEE 33-bus system with three MGs and the IEEE 123-bus system with nine MGs. The results of the case studies show that the proposed TE-based framework can effectively coordinate the energy scheduling of the MGs. The operational cost of the DS is reduced significantly. Meanwhile, the proposed DRO-based algorithm provides a robust but not over-conservative solution for the operation decisions of the DNO and MGs in the proposed framework.
机译:网络微电网(MGs)被认为是未来配电系统(DS)的新兴电网设计。为了进一步提高系统的运行效率和可靠性,网络化MG的协调至关重要。在本文中,提出了一种用于DS中联网MG的协调能量管理的无功能量(TE)框架。配电网络运营商(DNO)代替了直接的协调信号和固定的定价方案,而是与MG组织了一个交易市场,以协调运营中的能源管理。此外,开发了一种基于分布鲁棒性优化(DRO)的算法,以在不确定性的情况下为提出的TE框架中的详细调度决策提供鲁棒的解决方案,而不必过于保守。使用带有三个MG的IEEE 33总线系统和带有9个MG的IEEE 123总线系统对提出的框架进行了案例研究。案例研究结果表明,所提出的基于TE的框架可以有效地协调MG的能量调度。 DS的运营成本大大降低。同时,所提出的基于DRO的算法为所提出的框架中的DNO和MG的操作决策提供了一个鲁棒但并非过于保守的解决方案。

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