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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >Novel Online Sensorless Dual-Axis Sun Tracker
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Novel Online Sensorless Dual-Axis Sun Tracker

机译:新型在线无传感器双轴太阳跟踪器

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In this study, a novel online sensorless dual-axis sun tracker regulated by the maximum power point tracking (MPPT) unit is proposed. The MPPT controller continuously calculates the maximum output power of the photovoltaic module/panel/array, and uses the altitude and azimuth angles deviations to find the sun direction where the greatest value of the maximum output power is extracted. Unlike all the other sensorless sun trackers that operate as open-loop systems, the proposed sun tracker is a closed-loop system, which uses the actual direction of the sun at any time to track the sun direction and this is the contribution of this study. The proposed sun tracker has the advantages of both sensor-based and sensorless dual-axis sun trackers, but it does not have their disadvantages. A photovoltaic system has been constructed, and it is experimentally verified that the proposed sun tracker finds the sun direction with the tracking error of only 0.11° which is less than the tracking errors of other both sensor-based and sensorless trackers. An increase of 28.8%–43.6% in the captured solar energy depending on the seasons is the main advantage of utilizing the proposed sun tracker.
机译:在这项研究中,提出了一种由最大功率点跟踪(MPPT)单元调节的新型在线无传感器双轴太阳跟踪器。 MPPT控制器连续计算光伏模块/面板/阵列的最大输出功率,并使用海拔高度和方位角偏差找到提取最大输出功率最大值的太阳方向。与所有其他作为开环系统运行的无传感器太阳跟踪器不同,拟议的太阳跟踪器是一个闭环系统,它可以随时使用太阳的实际方向跟踪太阳方向,这就是本研究的成果。所提出的太阳追踪器具有基于传感器和无传感器的双轴太阳追踪器的优点,但是没有缺点。已经构建了一个光伏系统,并通过实验验证了所提出的太阳跟踪器发现太阳方向的跟踪误差仅为0.11°,该误差小于其他基于传感器和无传感器跟踪器的跟踪误差。根据季节的不同,捕获的太阳能增加了28.8%–43.6%,这是使用建议的太阳追踪器的主要优势。

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