不确定负荷和可再生发电下的鲁棒系统重构

M. Mahdavi, K. Schmitt, Stephen B. Bayne, M. Chamana
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引用次数: 0

摘要

尽管分布式发电(DG)在现代配电系统中的运行减少了能量损失,但DG在此类网络中的渗透受到技术和投资限制。为了更有效地减少这些损失,应根据时变和不确定的负荷和可再生能源发电水平对主动配电系统进行重新配置。然而,考虑配电系统重构中的需求变异性会增加数学上的工作量、计算负担和处理时间。此外,重构模型必须具有足够的鲁棒性,以避免在小负荷和发电变化情况下的连续重构。因此,对于负荷和发电的不确定性和可变性,重构策略的选择应具有足够的鲁棒性和收敛速度。因此,本文针对负荷和可再生能源发电的可变性和不确定性,提出了一种有效且稳健的主动配电系统重构策略。将该模型提交给两个标准的分配系统,并将结果与文献中提出的其他模型进行比较。结果表明,该模型具有较好的鲁棒性和计算效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust System Reconfiguration in the Presence of Uncertain Loads and Renewable Generation
Although distributed generation (DG) operation in modern distribution systems reduces energy losses, DG penetration in such networks is restricted by technical and investment limitations. In order to reduce these losses more efficiently, active distribution systems should be reconfigured based on their time-varying and uncertain load and renewable generation levels. However, considering demand variability in distribution systems’ reconfiguration increases the mathematical efforts, computational burden, and processing time. Besides, the reconfiguration model must be robust enough to avoid consecutive reconfigurations under small load and generation variations. Accordingly, reconfiguration strategies should be chosen so that they have enough robustness and good convergence speed regarding load and generation uncertainty and variability. Therefore, the present paper develops an effective and robust strategy for active distribution systems’ reconfiguration with load and renewable generation variability and uncertainty. The model is submitted to two standard distribution systems where the results are compared with other models presented by the literature. The comparison highlights the robustness and computational time efficiency of the presented model.
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