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Effect of the secondary optics and the receiver design on the performance of a triple junction solar cell

机译:二级光学器件与接收机设计对三界太阳能电池性能的影响

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In this paper, the prototype of a compact and small scale HCPV system with two-axis tracking mechanism for building integration purposes is presented and the experimental measurements are reported. The system is composed of 4 groups of optics and photovoltaic cells, each containing 8 receivers. The cells are triple junction III-V (Ga_(0.5)In_(0.5)P, Ga_(0.99)In_(0.01)As and Ge) and they have a circular shape with an active area of 4.15 mm~2. The optics consists of a primary and a secondary optics: the former is a PMMA square Fresnel lens (75mm - side) with constant pitch; the latter is a refractive optics (RTP) realized with dielectric material, that i) improves the light homogeneity on the cell area, ii) reduces the negative effects of the sun-tracking misalignment and iii) increases the concentration ratio. The overall geometrical concentration ratio is 1300x. The two-axis tracking system is a tip-tilt type driven by three stepper motors, one for the tip movement and the other two for the tilt movement. The alignment with the sunrays is guaranteed by an algorithm that controls the electrical motors. The HCPV prototype was tested at the Engineering Faculty of Universita Politecnica delle Marche in Ancona, Central Italy. The aim of the paper is to present the performance results, both simulated and experimental, of two different secondary optics and to assess the effect of the distance between the primary and the secondary optics on the concentration efficiency. In addition, two different solutions for the 3J cell receiver where tested, the Insulated Metal Substrate technology (IMS) and the Direct Bonded Copper (DBC). The electrical I-V curves are presented in order to assess the performance of the CPV system using the two different solutions. The experimental tests are realized under real outdoor operating conditions, therefore also the direct normal radiation (DM) was taken into account.
机译:本文提出了一种具有用于构建集成目的的双轴跟踪机构的紧凑型和小型HCPV系统的原型,并报告了实验测量。该系统由4组光学和光伏电池组成,每个光电电池包含8个接收器。细胞是三结III-V(Ga_(0.5)In_(0.5)P,Ga_(0.099)In_(0.01)AS和Ge),它们具有圆形形状,有效面积为4.15mm〜2。光学器件包括初级和二级光学器件:前者是PMMA方形菲涅耳透镜(75mm侧),恒定间距;后者是用介电材料实现的折射光学器件(RTP),I)改善了细胞面积上的光均匀性,ii)降低了太阳跟踪未对准和III的负效应增加浓度比。整体几何浓度比为1300倍。双轴跟踪系统是由三个步进电机驱动的尖端倾斜式,一个用于尖端运动,另一两个用于倾斜运动。通过控制电动机的算法保证与阳光的对准。 HCPV原型在意大利中部安科纳的Universita Politecnica Carle Marche的工程学院进行了测试。本文的目的是介绍两种不同的二级光学器件的模拟和实验性的性能结果,并评估初级光学器件与次级光学之间的距离对浓度效率的影响。此外,在测试的3J电池接收器的两个不同的解决方案,其中绝缘金属基板技术(IMS)和直接粘合铜(DBC)。提出了电气I-V曲线,以评估CPV系统使用两种不同的解决方案的性能。实验试验在真实的户外操作条件下实现,因此也考虑了直接正常辐射(DM)。

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