利用太阳能光伏系统提高电力系统效率

Ammar Arpadžić, M. Saric, J. Hivziefendic, S. Avdakovic
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摘要

世界各地的电力系统正在经历一场前所未有的变革。其主要动机之一是从传统发电技术向可再生能源(RES)的过渡。这种转变在全球范围内对电力系统、环境和社会参与产生了许多积极影响。然而,规划和分配不当的可再生能源增加了电力系统运行的复杂性,并可能带来许多挑战。本文研究了RES网格整合过程中最常用的一些参数。特别地,在以光伏为主的电力系统中,讨论了不同光伏渗透水平对能量损耗和变压器电流负荷的影响。分析是在DigSILENT®Powerfactory软件中使用准动态分析对改进的IEEE 14总线系统进行的。结果表明,在PV穿透临界点之前,能量损失是可以降低的。达到临界点后,能量损失开始迅速增长。在达到临界点之前,变压器的电流负荷也随着PV穿深的增加呈减小的趋势,超过临界点后电流负荷迅速增大。总之,本工作的结果表明了适当的RES集成规划和分析的重要性,这仍然是一项重要的工程任务。
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Power system efficiency improvement using solar PV systems
Electrical power systems throughout the world experience an unprecedented transformation. One of the main motivation for this is a transition from conventional power generation technologies towards renewable energy sources (RES). This transformation has numerous positive effects on power systems, environment and social engagements on a global level. However, poorly planned and allocated RES add complexity to power systems operations and can cause numerous challenges. This paper investigates some of the most common parameters used in the RES grid integration process. In particular, the impact of different PV penetration levels on energy losses and transformer current loading in a PV predominated power system are presented. The analysis is performed in DigSILENT® Powerfactory software using quasi-dynamic analysis on a modified IEEE 14 bus system. The results demonstrated that the energy losses could be reduced until the critical point of PV penetration. After the critical point is reached, the energy losses start to grow rapidly. The current loading of the transformers also tend to reduce with the increase in PV penetration until the critical point and rapidly grow after the critical point. In conclusion, results presented in this work demonstrate the importance of appropriate RES integration planning and analysis, which remains an important engineering task.
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