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Operating strategy and optimal allocation of large-scale VRB energy storage system in active distribution networks for solar/wind power applications

机译:太阳能/风能应用有源配电网中大型VRB储能系统的运行策略和最佳分配

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摘要

With the high penetration of renewable-type distributed generators (DGs), the maximum consumption of wind and solar energy has become an increasingly serious problem in active distribution networks. In this study, one simple and effective operating strategy for large-scale VRB ESS to maximise the use of VRB ESS was proposed considering the dynamic characteristics of VRB including efficiency and absorption performance. And then, a mathematical framework for optimal allocation of VRB ESS was proposed considering the maximum consumption of wind and solar energy, the total costs of VRB ESS and the total benefits of VRB ESS. This proposed mathematical framework was solved by a dynamic programming optimisation algorithm and has been applied to determine the optimal VRB power and energy ratings in a real distribution power system. The feasibility of the solution is ensured based on a per-day cost model and the simulation results clearly demonstrate the necessity for optimal storage allocation, and the effectiveness of the proposed method.
机译:随着可再生型分布式发电机(DG)的高普及率,最大的风能和太阳能消耗已成为有源配电网中日益严重的问题。在这项研究中,考虑到VRB的动态特性(包括效率和吸收性能),提出了一种简单有效的大型VRB ESS操作策略,以最大限度地利用VRB ESS。然后,基于风能和太阳能的最大消耗量,VRB ESS的总成本和VRB ESS的总收益,提出了一个VRB ESS最优分配的数学框架。通过动态规划优化算法解决了该提出的数学框架,并将其应用于确定实际配电系统中的最佳VRB功率和能量额定值。基于每日成本模型确保了该解决方案的可行性,仿真结果清楚地表明了优化存储分配的必要性以及所提出方法的有效性。

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