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Power and mass optimization of the hybrid solar panel and thermoelectric generators

机译:混合太阳能电池板和热电发电机的功率和质量优化

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摘要

The thermoelectric generator (TEG) has been widely considered as an electrical power source in many ground applications because of its clean and noiseless characteristics. Moreover, the hybrid photovoltaic cell and TEG (PV/TEG) system has also received wide attention due to its improved power conversion efficiency over its monolithic counterparts. This paper presents a study of the dynamics and the operation of the hybrid PV/TEG system in an outer space environment where a unified thermodynamic model of this system is presented. Moreover, the multi-objective NSGA-II genetic algorithm is utilized to optimize the design of the TEG both in terms of optimal output power and in terms of mass. Specifically, the design of the single stage and the two stage variant of the aforementioned TEG are considered. Simulation results indicate that the optimized PV/TEG system does indeed achieve better efficiencies than that of the monolithic counterparts. Furthermore, it is shown that the single stage TEG is more beneficial than the two stage TEG in terms of achieving optimal performance. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由于其清洁和无噪音的特性,热电发生器(TEG)在许多地面应用中已被广泛认为是一种电源。此外,混合光伏电池和TEG(PV / TEG)系统由于其整体转换效率比单片同类产品更高而受到广泛关注。本文介绍了在外太空环境中混合PV / TEG系统的动力学和运行情况,并提出了该系统的统一热力学模型。此外,利用多目标NSGA-II遗传算法从最佳输出功率和质量两方面优化了TEG的设计。具体地,考虑了上述TEG的单级和两级变体的设计。仿真结果表明,经过优化的PV / TEG系统确实比整体式系统具有更高的效率。此外,表明在实现最佳性能方面,单级TEG比两级TEG更有益。 (C)2015 Elsevier Ltd.保留所有权利。

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