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Performance Evaluation of Unconcentrated Photovoltaic-Thermoelectric Generator Hybrid System under Tropical Climate

机译:热带气候下不连环光伏热电发电机混合系统的性能评价

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摘要

Indoor farming is among the approaches which can be adapted to improve agricultural sustainability and ensure the food security of countries. However, adopting indoor farming requires a high amount of energy to sustain the system. Incorporating a renewable energy system for supplying power to agricultural activities will allow the system to be more sustainable in the long run. An unconcentrated photovoltaic-thermoelectric generator (PV-TEG) hybrid system is designed based on the load requirement of an indoor farm. The hybrid system performance under Malaysia’s weather conditions was investigated and analyzed over three months. The designed system has shown its ability to provide sufficient power to the load, as well as supporting an additional load. Besides that, the TEGs power output was found to be dependent on the temperature as well as the types of connections used, where a higher temperature difference and series connection exhibited a better power output. Overall, the combination of the system showed that the addition of a TEG affects the efficiency and power output as compared to a standalone PV. Therefore, this implies that the hybrid system is able to exhibit a more positive outcome in certain weather conditions than a PV standalone system.
机译:室内养殖是可以适应改善农业可持续性的方法之一,并确保国家的粮食安全。然而,采用室内农业需要大量的能量来维持系统。纳入可再生能源系统,用于向农业活动提供权力,将使系统在长期运行中将更加可持续。基于室内农场的负载要求,设计了一种不协调的光伏 - 热电发电机(PV-TEG)混合系统。在马来西亚的天气条件下进行了混合系统性能,并分析了三个月。设计的系统显示了能力为负载提供足够的电力,以及支撑额外的负载。除此之外,发现TEGS功率输出取决于温度以及所使用的连接类型,其中更高的温差和串联连接表现出更好的功率输出。总的来说,系统的组合显示,与独立的PV相比,添加TEG会影响效率和功率输出。因此,这意味着混合体系能够在某些天气条件下表现出比PV独立系统更积极的结果。

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