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首页> 外文期刊>Solid-State and Electron Devices, IEE Journal on >Solar eyeball: an automatic sun-tracking concentrator for use with photovoltaic generators
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Solar eyeball: an automatic sun-tracking concentrator for use with photovoltaic generators

机译:太阳眼球:与光伏发电机一起使用的自动跟踪太阳的聚光器

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The paper describes a solar-electric conversion module which uses a plastic Fresnel lens to concentrate sunlight on to a group of GaAs/GaAlAs solar cells. These cells have given 16¿20% conversion efficiency and are expected to maintain this at the high intensities and temperatures involved. The necessary ability to track the sun is achieved using a novel pneumatic system powered by solar energy. When the eyeball is misaligned, the sun's image falls on a heat exchanger in one of two air reservoirs adjacent to the cells. The resultant expansion forces a magnetised piston against a fixed external magnetic field, causing the complete module to rotate until the solar cells are again in the focus. There need be no mechanical linkage with the external world apart from electrical output leads, and hence the module can be hermetically sealed and floated on water to provide a cheap, reliable, low-friction bearing. No motors or clockwork drivers are needed. Several experimental 1-axis modules have been made, either floating on water or using conventional bearings. All demonstrated the required `seek¿ and `hold¿ capabilities, finding the sun in 2¿10s. Work on a damping mechanism to prevent overshoot, and tests of the slow-tracking accuracy, are presently under way. An early 2-axis model on a demountable test bed has also been demonstrated, using four air chambers. The paper reports details of the magnetic piston, the optics of the system, and the thermodynamics of the heat exchangers, and an estimate of eventual costs.
机译:该论文描述了一种太阳能-电转换模块,该模块使用塑料菲涅耳透镜将阳光聚集在一组GaAs / GaAlAs太阳能电池上。这些电池具有16×20%的转换效率,并有望在所涉及的高强度和高温下保持这一效率。使用新型的由太阳能驱动的气动系统可以实现跟踪太阳的必要能力。当眼球未对准时,太阳的图像会落在与这些单元相邻的两个储气罐之一中的热交换器上。产生的膨胀将磁化的活塞推向固定的外部磁场,从而使整个模块旋转,直到太阳能电池再次成为焦点。除了电力输出导线外,不需要与外界进行机械连接,因此该模块可以气密密封并漂浮在水上,以提供便宜,可靠,低摩擦的轴承。无需电动机或发条驱动器。已经制作了几个实验性的1轴模块,它们浮在水上或使用常规轴承。所有人都展示了所需的“搜索”和“保持”能力,并在2×10秒内找到了太阳。目前正在研究一种阻尼机制以防止过冲,并正在测试慢速跟踪的准确性。还证明了在可拆卸测试床上的早期2轴模型,使用了四个气室。该论文报告了磁性活塞,系统的光学系统和热交换器的热力学的详细信息,以及最终成本的估算。

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