Design perspective of multi-channel data acquisition and logger system for CPV technology

Navid Torabpourshiraz, Shankar Duraikannan, Chandrasekharan Nataraj
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引用次数: 3

Abstract

The world demand for alternative energy source has increased with the consumption of energy increasing tenfold in the past five decades. Solar power generation is one such alternative, and Concentrated Photovoltaic Technology (CPV) is one of the two main technologies used for producing electricity from Concentrated Solar Power (CSP). Meteorological parameters such as solar irradiance and cell temperature when the sunlight is concentrated on the CPV module influence the efficiency of the CPV power generation systems. Additionally, the output power of a CPV plant must be measured and monitored to improve the condition of plant, again in terms of efficiency and reliability. Firstly, in this paper, the significance of the meteorological parameters and the CPV system parameters are discussed. This is followed by a description of proposed multichannel data acquisition and logger for CPV technology. Experimental results have proven a good level of accuracy of the proposed system in terms of the acquired meteorological parameters and CPV system parameters.
基于CPV技术的多通道数据采集与记录仪系统设计思路
在过去的五十年里,世界对替代能源的需求随着能源消耗增加了十倍而增加。太阳能发电就是这样一种替代方案,而聚光光伏技术(CPV)是用于聚光太阳能发电(CSP)的两种主要技术之一。当太阳光集中在CPV组件上时,太阳辐照度和电池温度等气象参数会影响CPV发电系统的效率。此外,必须测量和监测CPV电厂的输出功率,以改善电厂的状况,再次在效率和可靠性方面。本文首先讨论了气象参数和CPV系统参数的意义。接下来是对CPV技术的多通道数据采集和记录器的描述。实验结果表明,该系统在获取的气象参数和CPV系统参数方面具有良好的精度。
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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