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Development of Wireless Energy Transfer Module for Solar Energy Harvesting

机译:太阳能收割无线能量传输模块的开发

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A module of wireless energy transfer (WET) has been developed to interact with the ambient solar energy. The main idea of the module development is to distribute the collected electrical energy from a solar panel module to in house loads appliances wirelessly. The solar panel module has been identified to have 240W, 30V, Poly Crystalline Silicon Photovoltaic solar panel with 60 cells. The design of WET module is based on magnetic resonance technology, which employed two sub-unit modules development; driving circuit and two coils mutually inducted to transfer energy in a suitable resonant frequency. Class-D RF power amplifier has been used as the driving circuit for transmitted coil switching which has an advantage of nearly 99% efficiency theoretically. Three types of coils have been developed; there are circular coil, flat spiral coil and flat Rodin coil. High quality factor Q (>100) of each coil is designed to minimize the power dissipation in coil. With the highest efficiency of the wireless energy transfer module, the energy collected by photovoltaic solar panel can be transferred with nearly zero of its losses and higher wireless transmission distance. Results have shown that, flat spiral coil have higher efficiency with longer distance of transmission that can be achieved compare to the other designs. The maximum distance of transmission is 26cm with an efficiency of 80% at quality factor 272.62. Based on the results it has been proven that using the coil with a high factor Q and coupling coefficient at matched resonant frequency leads to a bigger energy transfer with a greater distance. Experimental results show that, optimal efficiency of the designed system can be achieved with circular loop coil is 45.25% at factor Q 413.62, while 36.5% at factor Q 264.63.
机译:已经开发了一种无线能量转移(湿)模块来与环境太阳能相互作用。模块开发的主要思想是将从太阳能电池板模块中的收集的电能分配到内部负载设备。已经识别了太阳能电池板模块具有240W,30V,具有60个单元的多晶硅光伏太阳能电池板。湿模块的设计基于磁共振技术,采用两个子单元模块开发;驱动电路和两个线圈相互互压以在合适的谐振频率中传递能量。 D类RF功率放大器已被用作传输线圈切换的驱动电路,其优点在理论上具有近99%的效率。已经开发了三种类型的线圈;有圆形线圈,扁平螺旋线圈和扁平罗丁卷线圈。每个线圈的高质量因子Q(> 100)旨在最小化线圈中的功耗。通过无线能量传输模块的最高效率,光伏太阳能电池板收集的能量可以通过其损耗和更高的无线传输距离传输。结果表明,扁平螺旋线圈具有更高的效率,可延长距离距离,可以实现与其他设计相比。变速器的最大距离为26cm,效率为80%,质量因子272.62。基于结果,已经证明,使用具有高因子Q的线圈和匹配谐振频率的耦合系数导致更大的能量传输,距离更大。实验结果表明,通过圆环线圈可以实现设计系统的最佳效率,在因子Q 413.62时为45.25%,而因子Q 264.63的36.5%。

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