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Comparative study between two novel sensorless and sensor based dual-axis solar trackers

机译:两种新型无传感器和基于传感器的双轴太阳跟踪器的比较研究

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摘要

Two novel solar trackers are designed and constructed. The two trackers are novel because the first one that is a sensorless dual-axis solar tracker has a tracking error of only 0.43 degrees which is less than that of the other sensorless and even most sensor based solar trackers reported in the literature, and the tracking error of the second tracker that is a sensor based dual-axis solar tracker is at most 0.14 degrees which is explicitly less than that of the state-of-the-art sensor based solar trackers. The other contribution of this work is that the performances of the two trackers are compared to each other. On the one hand, it is experimentally verified that applying the sensor based solar tracker to a PV panel fixed to the sun's noon position increases the average daily captured solar energy about 27.7%, 32.5%, 373%, 42.7% and 35.22% respectively in winter, spring, autumn, summer and during one year. For the sensorless tracker, these factors are less, so that, they are respectively 19.1%, 22.4%, 26.1%, 30.2% and 24.59%. On the other hand, the sensor based solar tracker is more complicated and expensive because it needs one sensor equipped with a radiance limiting tube and extra mechanical components. (C) 2016 Elsevier Ltd. All rights reserved.
机译:设计并制造了两种新颖的太阳能跟踪器。这两个跟踪器是新颖的,因为第一个跟踪器是无传感器双轴太阳跟踪器,其跟踪误差仅为0.43度,该误差小于文献中报道的其他无传感器甚至大多数基于传感器的太阳跟踪器的跟踪误差。作为基于传感器的双轴太阳跟踪器的第二个跟踪器的误差最大为0.14度,明显小于基于传感器的最新技术的太阳跟踪器的误差。这项工作的另一个贡献是将两个跟踪器的性能进行了比较。一方面,已通过实验验证,将基于传感器的太阳能跟踪器应用于固定在太阳正午位置的PV面板上,可使每日平均捕获太阳能分别增加27.7%,32.5%,373%,42.7%和35.22%。冬季,春季,秋季,夏季以及一年中。对于无传感器跟踪器,这些因素较小,因此分别为19.1%,22.4%,26.1%,30.2%和24.59%。另一方面,基于传感器的太阳能跟踪器更加复杂和昂贵,因为它需要一个配备有辐射限制管和额外机械组件的传感器。 (C)2016 Elsevier Ltd.保留所有权利。

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