论文标题

受频率稳定性限制和短期太阳能变化的自动网格的旋转储量分配

Allocation of spinning reserves for autonomous grids subject to frequency stability constraints and short-term solar power variations

论文作者

Alves, Erick Fernando, Polleux, Louis, Guerassimoff, Gilles, Korpås, Magnus, Tedeschi, Elisabetta

论文摘要

低惯性,孤立的电力系统面临着对功率变化的弹性问题。可再生能源(例如风能和太阳能光伏)的整合进一步推动了该问题的界限。更高的可再生能源份额需要更好地评估电气系统稳定性,以避免严重的安全和经济后果。考虑到频率稳定性要求和分配适当的旋转储量,因此成为电力系统的长期计划和运营管理中重要性的话题。在本文中,提出了动态频率限制,以确保由于风阵或云通道而导致的短期功率变化中的弹性。在案例研究中说明了所提出的约束的使用,将约束条件集成到混合企业的线性编程算法中,以缩小隔离工厂中太阳能光伏和电池储能资源的最佳能力。该案例研究的结果表明,在忽略频率限制的情况下,能源和碳排放量的降低分别高估了8.0%和10.8%。使用案例研究的时间域模拟对所提出的最佳尺寸进行验证。结果表明,在最坏情况下,此最佳系统在频率稳定下是频率稳定的。

Low-inertia, isolated power systems face the problem of resiliency to power variations. The integration of renewable energy sources, such as wind and solar photovoltaic, pushes the boundaries of this issue further. Higher shares of renewables requires better evaluations of electrical system stability, to avoid severe safety and economic consequences. Accounting for frequency stability requirements and allocating proper spinning reserves, therefore becomes a topic of pivotal importance in the long-term planning and operational management of power systems. In this paper, dynamic frequency constraints are proposed to ensure resiliency during short-term power variations due to, for example, wind gusts or cloud passage. The use of the proposed constraints is exemplified in a case study, the constraints being integrated into a mixed-integer linear programming algorithm for sizing the optimal capacities of solar photovoltaic and battery energy storage resources in an isolated industrial plant. Outcomes of this case study show that reductions in the levelized cost of energy and carbon emissions can be overestimated by 8.0% and 10.8% respectively, where frequency constraints are neglected. The proposed optimal sizing is validated using time-domain simulations of the case study. The results indicate that this optimal system is frequency stable under the worst-case contingency.

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