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Estimation of the flexibility range in the transmission-distribution boundary

机译:传输-分配边界中灵活性范围的估计

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The smart grid concept increases the observability and controllability of the distribution system, which creates conditions for bi-directional control of Distributed Energy Resources (DER). The high penetration of Renewable Energy Resources (RES) in the distribution grid may create technical problems (e.g., voltage problems, branch congestion) in both transmission and distribution systems. The flexibility from DER can be explored to minimize RES curtailment and increase its hosting capacity. This paper explores the use of the Monte Carlo Simulation to estimate the flexibility range of active and reactive power at the boundary nodes between transmission and distribution systems, considering the available flexibility at the distribution grid level (e.g., demand response, on-load tap changer transformers). The obtained results suggest the formulation of an optimization problem in order to overcome the limitations of the Monte Carlo Simulation, increasing the capability to find extreme points of the flexibility map and reducing the computational effort.
机译:智能电网概念提高了配电系统的可观察性和可控性,为双向控制分布式能源(DER)创造了条件。可再生能源(RES)在配电网中的高度渗透可能会在输电和配电系统中造成技术问题(例如电压问题,分支拥堵)。可以利用DER的灵活性来最大程度地减少RES的限制并增加其托管能力。本文探讨了蒙特卡洛模拟的使用,以评估输配电系统之间边界节点上有功和无功功率的灵活性范围,同时考虑了配电网一级的可用灵活性(例如需求响应,有载分接开关)变压器)。获得的结果提出了优化问题的表述,以便克服蒙特卡洛模拟的局限性,提高发现柔性图的极端点的能力并减少计算量。

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