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Optimal Allocation of ESSs in Active Distribution Networks to Achieve Their Dispatchability

机译:活动分配网络中ESS的最佳分配实现调度性

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This paper presents a method for the optimal siting, and sizing of energy storage systems (ESSs) in active distribution networks (ADNs) to achieve their dispatchability. The problem formulation accounts for the uncertainty inherent to the stochastic nature of distributed energy sources, and loads. Thanks to the operation of ESSs, the main optimization objective is to minimize the dispatch error, which accounts for the mismatch between the realization, and prediction of the power profile at the ADN connecting point to the upper layer grid, while respecting the grid voltages, and ampacity constraints. The proposed formulation relies on the so-called Augmented Relaxed Optimal Power Flow (AR-OPF) method: it expresses a convex full AC optimal power flow, which is proven to provide a global optimal, and exact solution in the case of radial power grids. The AR-OPF is coupled with the proposed dispatching control resulting in a two-level optimization problem. In the first block, the site, and size of the ESSs are decided along with the level of dispatchability that the ADN can achieve. Then, in the second block, the adequacy of the ESS allocations, and the feasibility of the grid operating points are verified over operating scenarios using the Benders decomposition technique. Consequently, the optimal size, and site of the ESSs are adjusted. To validate the proposed method, simulations are conducted on a real Swiss ADN hosting a large amount of stochastic Photovoltaic (PV) generation.
机译:本文介绍了在主动分配网络(ADN)中的最佳选址和尺寸尺寸的方法,以实现其调度性。问题制定占分布式能源随机性质的不确定性,以及负载。由于ESS的操作,主要优化目标是最小化调度误差,其考虑了在ADN连接点处的电力曲线到上层电网之间的功率分布之间的不匹配,同时尊重网格电压,和余地限制。所提出的配方依赖于所谓的增强宽松最优功率流量(AR-OPF)方法:它表达了一个凸形全交流最佳功率流量,这被证明在径向电网的情况下提供全球最佳和精确的解决方案。 AR-OPF与所提出的调度控制耦合,从而产生了两级优化问题。在第一个块,ESS的网站和大小与ADN可以实现的频率级别相同。然后,在第二块中,ESS分配的充分性以及使用弯曲分解技术的操作场景验证了网格操作点的可行性。因此,调整了ESS的最佳尺寸和现场。为了验证所提出的方法,在托管大量随机光伏(PV)产生的真实瑞士ADN上进行模拟。

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