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Dynamic Robust Reconfiguration of Distribution Network with Low-wind-speed Wind Turbine Integrated

机译:集成低风速风力发电机组的配电网动态鲁棒重构

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For distribution systems where wind sources are poor, low-wind-speed wind turbines (LWTG) plays an important role in improving the security, economy and reliability of the system. However, the stochastic volatility of LWTG output and loads poses a challenge to the technology of distribution network reconfiguration. Considering the uncertainty of LWTG output, photovoltaic output and changes of load in multiple continuous periods, a dynamic robust reconfiguration model is established. The optimization target is to minimize the three-phase current unbalance and network loss. The model solving process combines the Latin hypercube sampling-based Monte Carlo method, the Semi-invariant method and the compound differential evolution algorithm. The influence of LWTG on the reconfiguration results is explored based on the modified IEEE34-node simulation system, and the performance of the proposed dynamic robust reconfiguration method is then verified.
机译:对于风源较差的配电系统,低风速风力涡轮机(LWTG)在提高系统的安全性,经济性和可靠性方面起着重要作用。但是,LWTG输出和负载的随机波动性对配电网络重构技术构成了挑战。考虑LWTG输出,光伏输出和多个连续周期负载变化的不确定性,建立了动态​​鲁棒重构模型。优化目标是使三相电流不平衡和网络损耗最小。模型求解过程结合了基于拉丁超立方体采样的蒙特卡洛方法,半不变方法和复合差分演化算法。在改进的IEEE34节点仿真系统的基础上,探讨了LWTG对重构结果的影响,然后验证了所提出的动态鲁棒重构方法的性能。

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