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Indoor performance analysis of genetically optimized circular rotational square hyperboloid (GOCRSH) concentrator

机译:基因优化圆形旋转方形双曲线(GOCRSH)集中器的室内性能分析

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In the past few years, there was an increasing popularity of portable solar chargers for providing access to clean affordable electricity to remote locations in developing countries. Looking at the surge in demand, it is also important to reduce the environmental impact of portable solar chargers. Solar photovoltaic (PV) concentrators have the potential to reduce the embodied energy and thus the embodied greenhouse gas emissions, humantoxicity and eco-toxicity potential during production, recycling and disposal stages of silicon PV solar panels. Yet, no solar PV concentrator designs have been proposed for portable solar systems for developing countries. Recently, a novel concentrator known as genetically optimized circular rotational square hyperboloid (GOCRSH) concentrator was developed to address this problem. This paper evaluates the performance of four types of GOCRSH concentrators; namely GOCRSH_A GOCRSH_B, GOCRSH_C-rh and GOCRSH_D that have a geometrical gain of 3.73x, 3.34x, 3.80x and 4.07x respectively. The experimental analysis of these concentrators was performed indoors under standard test conditions, i.e. 1000 W/m(2), AM 1.5G and at a temperature of 25 degrees C to characterize the concentrators at normal incidence and to determine their angular response. Firstly, the fabrication process of the prototypes is described. Secondly, the GOCRSH concentrated devices and the reference cell are characterized at normal incidence, obtaining the current-voltage (I-V) and power-voltage (P-V) curves. Next, the angular response of the concentrators is obtained at various angles of incidence of up to +/- 70 degrees in increments of 5 degrees. Mismatches between the simulation results and the experimental results are identified and possible error sources leading to the mismatch are discussed. Lastly, the increase in solar cell temperature under constant illumination and its impact on the solar cell performance is recorded for the GOCRSH_A concentrating device. From the indoor experiments, it was found that the prototypes were showing the maximum power point ratio under normal incidence of 2.9x, 2.6x, 3.9x and 2.7x with the GOCRSH_A GOCRSH_B, GOCRSH_C-rh and GOCRSH_D respectively.
机译:在过去的几年里,便携式太阳能充电器的普及越来越受欢迎,以便在发展中国家的远程位置提供清洁的经济实惠的电力。看着需求的激增,减少便携式太阳能充电器的环境影响也很重要。太阳能光伏(PV)浓缩器具有减少体现的能量,从而有可能在生产,再循环和处理阶段的实施,硅PV太阳能电池板的处理,湿润和处理阶段。然而,对于发展中国家的便携式太阳能系统,没有建议太阳能光伏集中器设计。最近,开发了一种称为遗传优化的圆形旋转方形双曲线(Gocrsh)集中器的新型浓缩器以解决这个问题。本文评估了四种类型的GOCRSH集中器的性能;即Gocrsh_a gocrsh_b,gocrsh_c-rh和gocrsh_d,其几何增益分别为3.73x,3.34x,3.80x和4.07倍。在标准试验条件下进行这些浓缩器的实验分析,即1000W / m(2),am 1.5g,25℃的温度,以正常入射地表征浓缩器,并确定其角度响应。首先,描述了原型的制造过程。其次,GOCRSH浓缩装置和参考电池的特征在正常入射时,获得电流 - 电压(I-V)和电力电压(P-V)曲线。接下来,以5度的增量,以5度高达+/- 70度的发生率的各种角度获得聚光器的角度响应。鉴定了模拟结果与实验结果之间的不匹配,并讨论了导致不匹配的可能误差源。最后,为GOCRSH_A集中装置记录了恒定照明下太阳能电池温度的增加及其对太阳能电池性能的影响。从室内实验中,发现原型显示了在正常发射下的最大功率点比2.9倍,2.6倍,3.9倍和2.7倍,共用Gocrsh_a gocrsh_b,gocrsh_c-rh和gocrsh_d。

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