Fuzzy based sensorless tracking controller on the dual-axis PV panel for optimizing the power production

B. Aprilia, M. Z. Romdlony, J. Raharjo, Yogi Ghifari Sidik
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引用次数: 0

Abstract

In general active sun trackers move because they respond to light sensors that measure the intensity of sunlight. However, sensor based trackers are usually more expensive than sensor less trackers. In addition, based on several studies, a comparison between sensor and sensorless based tracker only reports lower tracking error and higher power generation for sensor based than sensorless tracker but does not include an analysis of energy use on the sensor. Therefore, this study aims to design a sensorless closed loop tracking system for solar panels with two degrees of freedom. The tracking controller in this study is based on the Fuzzy Logic Controller (FLC) method. In this study, a dual-axis PV can increase power output by 20.2% compared to a fixed PV (0 ° axis position). This is because, in comparison to a fixed PV, dual axis PV adjusts the solar panel perpendicular to the sun's position to optimize electrical conversion.
基于模糊的双轴光伏板无传感器跟踪控制器优化发电
一般来说,主动太阳跟踪器的移动是因为它们对测量阳光强度的光传感器做出反应。然而,基于传感器的跟踪器通常比无传感器的跟踪器更昂贵。此外,根据几项研究,基于传感器和基于无传感器的跟踪器之间的比较只报告了基于传感器的跟踪器比基于无传感器的跟踪器跟踪误差更小,发电量更高,但不包括对传感器能源使用的分析。因此,本研究旨在设计一种二自由度太阳能板无传感器闭环跟踪系统。本研究的跟踪控制器是基于模糊逻辑控制器(FLC)方法。在本研究中,与固定PV(0°轴位置)相比,双轴PV可以增加20.2%的功率输出。这是因为,与固定PV相比,双轴PV调整太阳能电池板垂直于太阳的位置,以优化电力转换。
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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