基于MATLAB/SIMULINK的巴布亚省Asmat Regency Pirien离网光伏发电系统研究与设计

Arga Iman Malakani, Dwi Handoko Arthanto, Bernardus Galih Dwi Wicaksono, A. Purwadi
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引用次数: 1

摘要

电是人类的基本需求。电气化的地区可以改善该地区的经济和繁荣。2018年,印度尼西亚的电气化率达到98.05%,巴布亚的电气化率最低,为81.66%。增加电气化所面临的问题是基础设施和发电厂的分布,特别是在偏远地区。印度尼西亚在太阳能资源方面具有潜力。一个可行的解决方案是建立一个使用离网电力系统的发电厂。除此之外,离网电力系统还受到地理条件、潜在资源、供给负担等因素的影响,需要进行技术经济分析。本文将对离网系统进行技术经济分析。技术分析用MATLAB软件进行,经济分析用HOMER Pro进行。每个案例都将在巴布亚阿斯马特省的Pirien作为样本实施。根据得到的结果,可以根据需要的时间安排输入数据,因此使用MATLAB进行技术分析可以更加全面。本文还介绍了离网电力系统中最大功率点跟踪算法,即计算和观测算法,以及DC-DC变换器、逆变器、蓄电池等元器件的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study and Design of Off-Grid PV Power System in Pirien, Asmat Regency, Papua Province using MATLAB/SIMULINK
Electricity is a basic need for humans. Areas that have been electrified can improve the economy and prosperity in the area. Indonesia’s Electrification Ratio in 2018 has reached 98.05% and for Papua has the smallest electrification ratio of 81.66%. The problems faced in increasing electrification are infrastructure and distribution of power plants, especially in remote areas. Indonesia has the potential in solar resources. One solution that can be done is to build a power plant using an off-grid electricity system. Besides this, the off-grid electricity system is also influenced by geographical conditions, potential resources, and the burden that will be supplied so that technical and economic analysis needs to be done. In this paper we will discuss technical and economic analysis of the off grid system. For technical analysis used MATLAB software and economic analysis using HOMER Pro. Each case will be implemented in Pirien, Asmat Regency, Papua as a sample. Based on the results obtained, the technical analysis using MATLAB can be more comprehensive because the input data can be arranged based on the desired time. This paper also describes the Maximum Power Point Tracking algorithm, that is Perstrub and Observation Algorithm and the design of components such as DC-DC Converters, Inverters, and Batteries used in off-grid power systems.
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