提高间歇性混合分布式发电系统的小信号稳定性

O. A. Ajeigbe, J. Munda, Y. Hamam
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摘要

大型光伏/风力混合分布式发电系统的变异性会导致持续的系统振荡。在现有的可再生能源分配规划工作中,当这些分布式发电机组没有充分优化,网络动态变量不受约束时,振荡会导致严重的小信号稳定性问题。本文研究了间歇性可再生能源混合分布式发电(如光伏和风能)的规划和优化分配(规模、布局)和时间安排,最终目标是在所需的小信号稳定水平下,以最小的总成本净现值最大化可再生能源的发电和并网吸收。该问题被表述为一个随机混合整数线性规划,其中与小信号稳定性相关的变量被约束。本文还利用特征值分析方法评估了这些可再生能源发电输出功率的变化对IEEE-24总线测试系统小信号稳定性的影响。结果表明,电网的小信号稳定性得到了显著改善,可再生能源的吸收量增加,排放和电力成本显著降低。
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Enhancing Small-Signal Stability of Intermittent Hybrid Distributed Generations
The variability of large-scale photovoltaic/wind hybrid distributed generation power integrated into the distribution system causes persistent system oscillations. The oscillations result in serious small-signal stability issues when these distributed generation units are not adequately optimised and the network dynamic variables are unconstrained as seen in the existing renewable power allocation planning works. In this paper, planning and design of optimal allocation (sizing, placement) and timing of intermittent renewable energy hybrid distributed generations such as photovoltaic and wind is being investigated with the ultimate goal of maximising the renewable power generated and absorbed into the distribution network within the required small-signal stability level at a minimum net present value of total cost. The problem is formulated as a stochastic mixed integer linear program where variables related to small-signal stability are constrained. The paper also evaluated the impact of these renewable generation output power variability on the small-signal stability of the IEEE-24 bus test system using eigenvalues analysis. The results indicate a profound improvement on the small-signal stability of the network, an increase in the quantity of renewable power absorbed and a significant reduction in the costs of emissions and electricity.
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