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Evaluation Method of the Incremental Power Supply Capability Brought by Distributed Generation

机译:分布式发电带来的增量供电能力评价方法

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More and more distributed generation (DG) and energy storage (ES) devices are being connected to the distribution network (DN). They have the potential of maintaining a stable supply load during failure periods when using islanding operations. Therefore, DG and ES have capacity value, i.e., improving the power supply capability of the system. However, there are strong fluctuations in DG outputs, and the operations of ES devices have sequential characteristics. The same capacity of DG has different load-bearing capabilities compared to conventional thermal or hydroelectric units. This paper proposes a method for evaluation of power supply capability improvement in DNs. First, the temporal fluctuation in both power source and load demand during fault periods is considered. A DN island partition model considering the secondary power outage constraint is established. Then, a modified genetic algorithm is designed. The complex island partition model is solved to achieve accurate power supply reliability evaluation. And the incremental power supply capability associated to DG and ES devices is calculated. Finally, a case study is conducted on the PG E 69-bus system to verify the effectiveness of the proposed method. It is found that with a 20 configuration ratio of ES devices, the power supply capability improvement brought about by 6 MW DG can reach about 773 kW.
机译:越来越多的分布式发电 (DG) 和储能 (ES) 设备被连接到配电网 (DN)。当使用孤岛操作时,它们有可能在故障期间保持稳定的供应负载。因此,DG和ES具有容量值,即提高系统的供电能力。然而,DG输出存在很大的波动,并且ES器件的运行具有顺序特征。与传统的火力或水力发电机组相比,相同容量的DG具有不同的承载能力。该文提出了一种DNs供电能力提升的评价方法。首先,考虑了故障期间电源和负载需求的时间波动;建立了考虑二次停电约束的DN岛分区模型。然后,设计了一种改良的遗传算法。求解复杂孤岛分区模型,实现精准的电源可靠性评估。并计算与 DG 和 ES 器件相关的增量电源能力。最后,对PG&E 69总线系统进行了案例研究,以验证所提方法的有效性。研究发现,在ES器件配置比例为20%的情况下,6 MW DG带来的供电能力提升可以达到773 kW左右。

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