开发基于labview的独立光伏系统测试设备

A. See, Weixiang Shen, O. Seng, S. Ramanathan, I-Wern Low
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引用次数: 13

摘要

为了量化独立光伏(PV)系统性能改进的潜力,安装了一个测试设施。本文描述了一个原型独立光伏系统的开发。从本质上讲,整个系统包括个人电脑(PC)、数据采集(DAQ)、电池阵列和太阳能阵列模拟器(SAS)的集成,以创建一个独立的光伏系统,并对系统进行测试和模拟。这种新系统具有高精度测量和低成本的商业可行性。这个设施的基本理念是,SAS模拟太阳能,利用太阳能给电池充电。通过监测电池的平均温度、电压、电流等参数得到的信息,通过DAQ输入到PC机进行分析。利用LabVIEW软件开发了该定制控制接口,构成了仪器间通过IEEE-GPIB总线通信的编程骨干。为这个系统创建的软件是高度通用的,可以用于使用不同硬件的其他实例。本文还讨论了进一步的研究计划,利用这个独立的光伏系统进行负载分析和电池充电或放电,并将从马来西亚气象部门获得的实际气象数据输入到SAS。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a LabVIEW-based test facility for standalone PV systems
To quantify the potential for performance improvement of a standalone photovoltaic (PV) system, a test facility has been installed. This paper describes this development of a prototype standalone PV system. Essentially this entire system involves the integration of a personal computer (PC), data acquisition (DAQ), a battery array and a solar array simulator (SAS) to create a standalone PV system and to test and simulate the system. This new system boasts of high accuracy measurements coupled with the commercial viability of low cost. The basic idea of this facility is that the SAS simulates solar power which is utilized to charge batteries. The information obtained by monitoring parameters, such as average battery's temperature, voltage and current is fed to the PC via the DAQ for analysis. This customized control interface has been developed by utilizing LabVIEW software, which forms the programming backbone of inter-instrument communication via IEEE-GPIB bus. The software created for this system is highly generic and can be used for other instances where different hardware is used. This paper also discussed further research plan, in utilizing this standalone PV system to perform load analysis and batteries charging or discharging with the inputs to the SAS with actual meteorological data obtained from the Malaysian meteorological department.
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