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Simulation analysis for maximizing renewable solar energy to improve the power generation capacity in the State of Kuwait

机译:最大化可再生太阳能以提高科威特州发电能力的模拟分析

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This paper aims to present how to improve power generation capacity in the State of Kuwait through simulation analysis for maximizing the usage of renewable energy applications. Power demand in Kuwait increases every year by 6% that causes load-shedding problems in the national utility grid system. An effective solution is proposed in this paper to enhance the power demand shortage which leads to reduce the effects of load demands excesses, by employing some solutions in the field of solar energy system. The on-grid solar energy system to be spread on roof of buildings connected to utility grid in Kuwait is a fantastic solution for backing up the increasing power demand. In this paper, the research work is directed towards the study of new approach by adopting power generation system based on PV on-grid systems installed on rooftops of commercial and residential buildings. The system performance analysis is carried out by choosing Mono crystalline PV modules using PSIM software simulation. This simulation covers the analysis of power generated by the PV system as an input passing through a selected maximum power point tracker (MPPT) to achieve the maximum energy output. A control algorithm for power regulation has been developed with maximum power generation of enhanced AC power grid with power factor close to unity. A reliable tracker for the power output was shown by the simulation results generated by the model.
机译:本文旨在介绍如何通过模拟分析来提高科威特州的发电能力,以最大程度地利用可再生能源。科威特的电力需求每年以6%的速度增长,这在国家公用事业电网系统中造成了甩负荷问题。本文提出了一种有效的解决方案,通过在太阳能系统领域中采用一些解决方案来增强电力需求短缺,从而减少过多的负荷需求。网格太阳能系统将散布在与科威特公用电网相连的建筑物的屋顶上,是支持不断增长的电力需求的绝佳解决方案。本文的研究工作是针对采用新方法的研究,即采用基于安装在商业和住宅建筑物屋顶上的光伏并网系统的发电系统。通过使用PSIM软件仿真选择单晶光伏组件来进行系统性能分析。该仿真涵盖了对光伏系统产生的功率的分析,该功率作为输入通过选定的最大功率点跟踪器(MPPT)以实现最大能量输出。已经开发了用于功率调节的控制算法,其具有在功率因数接近统一的情况下增强型交流电网的最大发电量。模型生成的仿真结果显示了可靠的功率输出跟踪器。

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