Experimental Testbed for Solar PV-Battery Hybrid System

D. Hendriana, E. Sinaga, Arko Djajadi
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Abstract

Indonesia has a high potential of solar energy due to its location on the equator and in this paper, experimental testbed for PV-Battery hybrid system is developed and discussed. The hybrid system is designed to supply electricity during the night time with on-grid inverters. Practical and inexpensive solar PV-Battery hybrid system was developed and tested in Tangerang area with flexible AC electric production during the daytime as well as the night time. Practical issues for hybrid system were discovered such as limited range of inverter output voltage, sensitivity of solar panel electric production to its position and shading, accurate DC current sensor, cable and component overheating, lower inverter conversion efficiency than what specification states, safety on charging Lithium-Ion battery. Conclusions from this study are that wet battery seems to store more electric energy and more robust than the free maintenance battery, battery voltage is not a good indicator for battery level of charged, solar panel electric production is sensitive to its position and clearness from the shading, measurement of cable and component temperature is needed to justify enough cable size to deliver designed electric power, enough capacity of the component and quality of connections, care need to be taken when Lithium-ion batteries are used due to possible explosion for too high charging current.
太阳能光伏-电池混合动力系统实验试验台
印度尼西亚地处赤道,太阳能潜力巨大,本文开发并讨论了光伏-电池混合动力系统的实验试验台。该混合系统的设计目的是在夜间通过并网逆变器供电。在Tangerang地区开发并测试了实用且廉价的太阳能-光伏-电池混合系统,该系统可在白天和夜间灵活地进行交流发电。发现了混合系统存在的一些实际问题,如逆变器输出电压范围有限、太阳能电池板发电对其位置和阴影的敏感性、直流电流传感器的准确性、电缆和组件过热、逆变器转换效率低于规范规定、锂离子电池充电安全性等。本研究的结论是,湿电池似乎比免费维护电池储存更多的电能,更坚固,电池电压不是电池充电水平的一个很好的指标,太阳能电池板的电力生产对其位置和阴影的清晰度很敏感,需要测量电缆和组件温度来证明足够的电缆尺寸来提供设计的电力,组件的足够容量和连接质量。使用锂离子电池时要小心,因为充电电流过大可能会发生爆炸。
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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