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Distributed Restoration for Integrated Transmission and Distribution Systems With DERs

机译:具有DER的综合输配电系统的分布式恢复

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A resilient power system is capable of providing fast and efficient recovery from outages caused by natural or man-made attacks. After a major blackout, transmission, and distribution system operators (TSOs and DSOs) coordinate to restore the system in a timely and reliable manner. However, these two systems are usually operated separately without considering capabilities and limitations of each individual network, or their mutual impacts. This could prolong the restoration process and lead to unpractical outcomes. Therefore, a distributed strategy for integrated transmission and distribution systems restoration (ITDSR) has been developed in this paper. Based on the alternating direction method of multipliers (ADMM), the distributed algorithm is able to provide the coordinated restoration for both TSOs and DSOs by sharing limited information of boundary buses in an iterative procedure. The ADMM-ITDSR model includes convex ac power flow model and three-phase unbalanced branch flow model. The ITDSR strategy coordinates the operation of distributed energy resources in terms of serving high priority loads across different networks. The effectiveness and advantage of developed models and algorithms are validated and demonstrated through testing of the integrated IEEE test cases, such as 14-bus transmission with 13-node distribution systems, and 39-bus transmission with 123-node distribution systems.
机译:弹性电源系统能够从自然或人为攻击造成的停电中快速有效地恢复。发生重大停电后,传输和分配系统操作员(TSO和DSO)进行协调,以及时可靠地恢复系统。但是,这两个系统通常在不考虑每个单独网络的功能和限制或它们相互影响的情况下单独运行。这可能会延长恢复过程并导致不切实际的结果。因此,本文开发了一种用于分布式传输和配电系统恢复的分布式策略(ITDSR)。基于乘法器的交替方向方法(ADMM),该分布式算法能够以迭代过程共享边界总线的有限信息,从而为TSO和DSO提供协调的恢复。 ADMM-ITDSR模型包括凸交流潮流模型和三相不平衡支流模型。 ITDSR策略根据为跨不同网络的高优先级负载提供服务来协调分布式能源的运行。通过对集成的IEEE测试用例进行测试,可以验证和证明已开发模型和算法的有效性和优势,例如使用13节点配电系统的14总线传输和使用123节点配电系统的39总线传输。

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