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Multi-time scale coordinated optimal control method for ADN considering source load prediction error

机译:考虑源负荷预测误差的ADN的多时间规模协调最优控制方法

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With the transition from traditional distribution networks to active distribution networks, renewable energy sources represented by wind and photovoltaics are connected to the system on a large scale. However, due to the randomness and intermittentness of their output, the peak shaving of the distribution network Competence presents a huge challenge. In this paper, considering the forecast errors on both sides of the source and load and the limited power purchase of the grid and the output of distributed power sources, through flexible scheduling of interruptible loads on the demand side and distributed power sources, an optimization scenario suitable for each typical operation is proposed. The multi-time scale coordinated optimization strategy with multiple time scales and multiple optimization objectives is used to coordinate and optimize the dispatch of distributed power sources and interruptible loads in the distribution network from three time scales: day-ahead, intra-day rolling, and real-time. After simulation verification, the multi-time scale coordinated and optimized dispatching method of active distribution network proposed in this paper can effectively suppress the impact of the uncertainty of renewable energy output on the distribution network, and alleviate the voltage over-limit, Problems such as line overload.
机译:随着从传统分配网络到主动分配网络的转变,风和光伏表示的可再生能源与系统以大规模连接到系统。然而,由于随机性和它们的产出间歇性,分销网络能力的峰值剃须具有巨大的挑战。在本文中,通过灵活的需求侧和分布式电源的可中断负载的灵活调度,考虑到源头和载荷的两侧和电路的电力资源购买和分布式电源的输出的预测误差以及分布式电源的输出。提出适用于每个典型操作。具有多个时间尺度和多种优化目标的多时间刻度协调优化策略用于协调和优化分布式电源的调度和优化分布网络中的分布网络中的可中断负载,从三次尺度:日前,日内滚动,以及即时的。在仿真验证之后,本文提出的主动分配网络的多时间尺度协调和优化的调度方法可以有效地抑制可再生能源输出对分销网络上的不确定性的影响,并减轻电压过度限制,如线路过载。

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