Identifying and Analyzing the Technical Challenges of Grid Tide Inverters for PV System: A Case Study of Ethiopia and Zambia

Redate Shawell Endalamaw
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Abstract

Zambia and Ethiopia are two countries from southern and eastern of Africa due to their geographical location and other factor the environment condition is different. The research aims at identifying and analszing the technical performance issues of Grid tide Inverter (GTI) for PV system due to operating climate and others factors. In Zambia the study focused on the two main solar plants which is under ZESCO national grid at malty facility zone (MFZ), the first one is the 54 megawatts Bangweulu solar power plant by Neon Investment of France, second one is 34MW Ngonye solar photovoltaic (PV) plant. In Ethiopia eight min off-grid site under Ethiopian Electric Utility(EEU) is included. Beltu, Behima, Mino, Ungoge,  Korhele,Tum, Omorate and Kofetu. A survey is conducted focusing on identifying and analyzing the technical performance issues of GTI in the above-mentioned area. Using Microsoft excel the environmental \climate condition, Solar radiation, Air temperature, Rain falls and Wind of the two country Zambia and Ethiopia is investigated and analysedfor each selected site. A questionnaire and a Sime structure interview is conducted. The basic inverter challenges are investigated from the collected data and the problem is analyzed based on the specific inverter data sheet. The data sheet of the inverter for each site under this study. Finally, the real-time performance of the inverter of the off-grid PV mini-grid system installed in a small remote town in Ethiopia and on-grid PV system from Zambia at multi facility zone is analysed using measured meteorological data. From on- grid and off-grid inverter performance challenges, which the researcher collected from different plant the main ones are climate or environmental effect and also over load. Overload is one of the frequent challenges in koftu, behama and amorita this can be due to high population growth and unexpected power demand from the community.  Environmental condition affects almost all solar plant site which is under this study. If we compere the climate of east which is Addis Ababa Ethiopia and southern of Africa Zambia Lusaka. The temperature of Lusaka is higher than Addis Ababa by 5.63°C and even in the plant under this study, temperature rise is one of the challenges on the inverter performance, sensitive electronic component bent due to excessive temperature. On the other side in Ethiopia Addis Ababa excessive rain affect the inverter. Finally, Addis Ababa has about 1.32 times more rainfall than Lusaka, (Addis Ababa’s 79.54mm vs Lusaka’s average of 60.34mm). For that reason, most of the inverter in Ethiopia on the mini off-grid site are affected by heavy rain condition.
光伏系统并网潮汐逆变器的技术挑战识别与分析——以埃塞俄比亚和赞比亚为例
赞比亚和埃塞俄比亚是两个来自非洲南部和东部的国家,由于其地理位置和其他因素的环境条件不同。本研究旨在识别和分析由于运行气候等因素导致的光伏系统电网潮汐逆变器(GTI)的技术性能问题。在赞比亚,研究的重点是ZESCO国家电网在malty设施区(MFZ)的两个主要太阳能发电厂,第一个是法国Neon Investment的54兆瓦Bangweulu太阳能发电厂,第二个是34兆瓦Ngonye太阳能光伏(PV)发电厂。在埃塞俄比亚,包括埃塞俄比亚电力公司(EEU)下的8分钟离网站点。Beltu, Behima, Mino, Ungoge, Korhele,Tum, Omorate和Kofetu。本文对上述地区GTI的技术性能问题进行了调查分析。使用微软excel对赞比亚和埃塞俄比亚两国的环境气候条件、太阳辐射、气温、降雨量和风速进行了调查和分析。采用问卷调查法和森姆结构访谈法。根据收集到的数据调查了逆变器的基本挑战,并根据具体的逆变器数据表对问题进行了分析。本研究中每个站点的逆变器数据表。最后,利用实测气象数据对埃塞俄比亚偏远小镇离网光伏微网系统逆变器和赞比亚多设施区并网光伏系统逆变器的实时性进行了分析。从研究人员收集到的不同电厂逆变器的并网和离网性能挑战来看,主要是气候或环境影响和过载影响。超载是koftu、behama和amorita经常面临的挑战之一,这可能是由于人口的高速增长和社区意想不到的电力需求。环境状况影响了本研究范围内几乎所有的太阳能电站场址。如果我们比较东部埃塞俄比亚的亚的斯亚贝巴和非洲南部赞比亚的卢萨卡的气候。卢萨卡的温度比亚斯亚贝巴高5.63℃,即使在本研究的工厂中,温升也是逆变器性能的挑战之一,敏感的电子元件因温度过高而弯曲。另一方面在埃塞俄比亚亚的斯亚贝巴过量降雨影响逆变器。最后,亚的斯亚贝巴的降雨量是卢萨卡的1.32倍(亚的斯亚贝巴的降雨量为79.54毫米,卢萨卡的平均降雨量为60.34毫米)。因此,埃塞俄比亚大部分小型离网站点的逆变器都受到暴雨条件的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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