首页> 外文会议>International Conference on Digital Information, Networking, and Wireless Communications >An investigation on the effect of operating temperature on power output of the photovoltaic system at University of Namibia Faculty of Engineering and I.T campus
【24h】

An investigation on the effect of operating temperature on power output of the photovoltaic system at University of Namibia Faculty of Engineering and I.T campus

机译:纳米比亚大学工程学院光伏系统工作温度对电力输出的影响研究及I.T校园

获取原文

摘要

Sun hours is one of the parameters used in Photovoltaic system design in determining whether installation of a solar system would be recommended for a particular region, with a minimum of 5 sun hours per day being a recommended standard. As a result, photovoltaic systems are preferably installed in areas with long sun hours and these invariably have high temperatures. However, studies carried out on the performance of photovoltaic modules have shown a considerable decrease in their power output at temperatures above their optimum operating temperature 25°C. Most interestingly, research has also shown a decrease in the output power of a photovoltaic module as it cools down after being heated to 58°C indicating that high temperatures may cause premature aging of the module. This research aims to determine whether the temperatures at which University of Namibia (UNAM) Faculty of Engineering and I.T campus' photovoltaic modules are operated are high enough to reduce the module power output considerably. To achieve this, the average operating temperature of the systems modules for the period of 214 days between 1 March and 30 September 2014 was determined. During the course of the research it was discovered that 79% of the insolation received by the system's modules daily is received in the time period between 12 pm and 4 pm. In this report, this time period will be referred to as the peak insolation period and because the insolation received directly affects PV power output, particular attention was paid to the effect PV module operating temperatures have on the system power output during this period. The PV system was modeled to a 98.7% mean accuracy using Matlab Simulink and run at optimum operating temperature, daily average operating temperature and peak insolation period operating temperature, for a range of insolation values. The simulation results show a 0.31% decrease in system power output per Kelvin increase in temperature and performance ra- ios of 0.97 and 0.94 when the simulation is run at daily average temperature and average peak insolation period temperature respectively. Finally, using the T test at the 95% confidence level, the power outputs obtained when the simulation was run at average operating temperature and average peak insolation temperature were tested to see if they are statistically different from the power outputs obtained when it is run at optimum operating temperature. The results of the T test showed that the power outputs obtained at both the average operating temperature and the average peak insolation operating temperature are statistically different from the power output at optimum operating temperature indicating that the temperature significant decreases the PV system power output.
机译:太阳小时是光伏系统设计中使用的参数之一,在确定是否建议为特定区域建议安装太阳能系统,每天至少为5小时是推荐的标准。结果,光伏系统优选地安装在具有长阳光小时的区域中,并且这些总是具有高温的区域。然而,在光伏模块的性能下进行的研究表明,在高于其最佳工作温度25℃的温度下的功率输出的显着降低。最有意义地,研究还示出了光伏模块的输出功率的降低,因为它在加热到58℃后冷却表示高温可能导致模块过早老化。本研究旨在确定纳米比亚大学(UNATRAM)工程学院和I.T校园的光伏模块的温度是否足够高,以显着降低模块功率输出。为此,确定了3月1日至2014年9月30日期间214天的系统模块的平均工作温度。在研究过程中,发现系统的模块每日收到的79%的孤立在下午12点至下午4点之间的时间。在本报告中,此时间段将被称为峰值呈现期,并且由于接收的不正常影响光伏电源输出,因此在此期间对系统电源输出的效果PV模块工作温度进行了特别的关注。使用MATLAB Simulink的PV系统模拟为98.7%的平均精度,并在最佳工作温度,每日平均工作温度和峰值不显示期间的工作温度下运行,一系列呈现值。仿真结果显示,当在日平均温度和平均峰值不适应周期温度下运行0.97和0.94时,每次开尔文的系统功率输出减少0.31%。最后,在95%置信水平下使用T测试,在模拟在平均工作温度下运行时获得的功率输出,并测试了平均峰值不呈现温度,看看它们是否与运行时获得的功率输出有统计学不同最佳工作温度。 T检验的结果表明,在平均工作温度和平均峰值不现实操作温度下获得的功率输出与最佳工作温度下的功率输出有统计学不同,指示温度显着降低PV系统功率输出。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号