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Aggregate Power Flexibility in Unbalanced Distribution Systems

机译:不平衡配电系统中的总功率灵活性

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摘要

With a large-scale integration of distributed energy resources (DERs), distribution systems are expected to be capable of providing capacity support for the transmission grid. To effectively harness the collective flexibility from massive DER devices, this paper studies distribution-level power aggregation strategies for transmission-distribution interaction. In particular, this paper proposes a method to model and quantify the aggregate power flexibility, i.e., the net power injection achievable at the substation, in unbalanced distribution systems over time. Incorporating the network constraints and multi-phase unbalanced modeling, the proposed method obtains an effective approximate feasible region of the net power injection. For any aggregate power trajectory within this region, it is proved that there exists a feasible disaggregation solution. In addition, a distributed model predictive control (MPC) framework is developed for practical implementation of the transmission-distribution interaction. At last, we demonstrate the performances of the proposed method via numerical tests on a real-world distribution feeder with 126 multi-phase nodes.
机译:随着分布式能源(DER)的大规模整合,分布式系统有望为输电网提供容量支持。为了有效利用大型DER设备的集体灵活性,本文研究了用于传输-分布交互的分布级功率聚集策略。特别是,本文提出了一种方法来对不平衡配电系统中随时间推移的总功率灵活性(即变电站可实现的净功率注入)进行建模和量化。结合网络约束和多阶段不平衡建模,该方法获得了净功率注入的有效近似可行区域。对于该区域内的任何总功率轨迹,证明存在可行的分解方案。此外,开发了一种分布式模型预测控制(MPC)框架,用于传输-分布交互的实际实现。最后,我们通过在具有126个多相节点的实际配电馈线上的数值测试,演示了该方法的性能。

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