Modeling ensuring demand-supply balance of the power system in conditions of significant renewable generation

T. Nechaieva
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引用次数: 1

Abstract

The problems of functioning of the IPS of Ukraine at fast growth in its structure the renewable energy source (RES)capacities such as wind and solar power plants are considered. In existing conditions, the presence of a significant share of basic nuclear generation, a small maneuverable range of TPP power units, and a limited amount of highly maneuverable hydro generation of the existing flexibility of the power system is not enough to ensure demand-supply balance of the power system with surplus RES electricity generation. The solution to this problem is currently performed by using hydro-pumped storage during uncharacteristic daytime hours of the day and limiting of electricity supply of wind and power plants into the power system. A modern solution is the use of to the battery storage systems to transfer the surplus of electricity from these RES in hours of increased consumption. The article presents the developed approach to modeling the participation of wind and solar capacities in load coverage balances of the optimization model of the forecast structure of power system generating capacities, that takes into account both curtailment and accumulation of excess generation of these RES. The modeling results showed that with significant of wind and solar power capacities, providing balance coverage load during spring floods with a significant share of nuclear generation capacity and the need for water supply is carried out as using hydro-pumped capacity during daytime hours of surplus capacity, grid battery storage systems so and battery storage systems, working together with RES, and their power curtailment. Keywords: power system, balance reliability, mathematical model, battery energy storage system, load curve, power curtailment
大量可再生能源发电条件下保证电力系统供需平衡的建模
考虑了乌克兰IPS在其结构快速增长时的功能问题,可再生能源(RES)容量,如风能和太阳能发电厂。在现有条件下,现有电力系统灵活性较大的基础核电占比较大、TPP发电机组机动性较小、高机动性水力发电数量有限,不足以保证具有剩余RES发电的电力系统的供需平衡。目前解决这一问题的方法是在非典型的白天时段使用抽水蓄能,并限制风力和发电厂向电力系统的电力供应。一个现代的解决方案是使用电池存储系统,在消耗增加的小时内从这些可再生能源中转移剩余的电力。本文提出了一种成熟的方法来模拟风电和太阳能发电能力在电力系统发电能力预测结构优化模型的负荷覆盖平衡中的参与,该模型同时考虑了这些re的弃风和过剩发电的积累。建模结果表明,在风电和太阳能发电能力显著的情况下,在春季洪水期间提供平衡的覆盖负荷,其中很大一部分是核发电容量和供水需求,在白天的剩余容量,电网电池存储系统和电池存储系统,与RES一起工作,以及他们的电力缩减。关键词:电力系统,平衡可靠性,数学模型,蓄电池储能系统,负荷曲线,弃电
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