Optimal Planning of Solar-Diesel Generation System with Energy Storage

V. Tremyasov, Yana E. Zograf, T. Krivenko
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引用次数: 1

Abstract

For power supply to isolated consumers, an autonomous power complex is used, consisting of photovoltaic converters, diesel generators and storage batteries. When planning the power complex, the fundamental task is to select the optimal structure of the elements of the generation system, which maximizes the use of the solar energy input to ensure the given consumer load. The article proposes a technique for optimizing a swarm of particles in relation to the problem of determining the composition and power of the elements of a solar-diesel generation system. On the example of the power supply system of the settlement of the Republic of Khakassia, the optimal structure of generating and storage facilities using solar energy has been determined. To assess the reliability indicators of the power complex, a probabilistic method has been proposed and implemented, which makes it possible to take into account the daily cyclicity and seasonal variability of the intensity of solar radiation
带储能的太阳能-柴油发电系统优化规划
为了向孤立的消费者供电,使用了由光伏转换器、柴油发电机和蓄电池组成的自主电力综合体。在规划电力综合体时,最根本的任务是选择发电系统要素的最优结构,使太阳能输入的利用率最大化,以保证给定的用户负荷。本文提出了一种优化粒子群的技术,该技术与确定太阳能-柴油发电系统元件的组成和功率有关。以哈卡斯共和国定居点供电系统为例,确定了太阳能发电和储能设施的最佳结构。为了评估电力综合体的可靠性指标,提出并实现了一种考虑太阳辐射强度日周期和季节变化的概率方法
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