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Design and Analysis of Spatial Parallel Manipulator for Dual Axis Solar Tracking

机译:双轴太阳跟踪空间并联机械手的设计与分析

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摘要

This work develops a solar tracker that is configured in a parallel manipulator structure for maximum power generation. The conventional solar tracker with a serial gimbaled structure is simply supported by the central pivot in the module frame of the solar panel, and the structural deformation of the frame causes the PV cells on the side of the panel to be frequently out of focus. Accordingly, the power efficiency of the PV can fall rapidly for each degree of misalignment with respect to the sun. This work introduces a spatial parallel mechanism to increase the rigidity of the solar tracker structure and thereby improve its power efficiency. The prototype mechanism that is demonstrated in this work can feasibly track the sun completely from sunrise to sunset at latitude of 23.7 N degrees. Different tracking postures against the solar hour at the summer solstice, spring equinox, and winter solstice are animated.
机译:这项工作开发了一种太阳能跟踪器,该跟踪器配置为并联机械手结构,可最大程度地发电。具有串联万向节结构的常规太阳能跟踪器仅由太阳能电池板模块框架中的中心枢轴支撑,并且框架的结构变形导致电池板侧面的PV电池经常失焦。因此,对于相对于太阳的每个未对准程度,PV的功率效率会迅速下降。这项工作引入了空间并行机制,以提高太阳能跟踪器结构的刚度,从而提高其功率效率。在这项工作中演示的原型机制可以切实可行地在23.7 N度的纬度范围内完全跟踪太阳从日出到日落的过程。在夏至,春分和冬至期间,针对太阳时的不同跟踪姿势具有动画效果。

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