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Effects of Deposition Process on Poly-Si Microscale Energy Harvesting Systems: A Simulation Study

机译:沉积工艺对多晶硅微细能量采集系统的影响:仿真研究

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In this paper, the feasibility of a low-temperature polysilicon (LTPS) microscale energy harvester for a wireless sensor node is investigated. For that purpose, two device-level models for the LTPS solar cell and thin-film transistors are proposed and employed in system-level evaluation of an energy harvesting system. The results of our analysis indicate that: 1) the maximum power operating point for the solar cell is different when connected to a lossy power converter; 2) increasing the average grain size of the LTPS film can reduce the circuit area by 20 times, while increasing the output power by 6%; and 3) the proposed bottom–up approach enables the designers to identify system bottlenecks and improve the performance accordingly.
机译:本文研究了低温多晶硅(LTPS)微型能量收集器用于无线传感器节点的可行性。为此,提出了两个用于LTPS太阳能电池和薄膜晶体管的设备级模型,并将其用于能量收集系统的系统级评估中。我们的分析结果表明:1)当连接到有损功率转换器时,太阳能电池的最大功率工作点是不同的; 2)增加LTPS薄膜的平均晶粒尺寸可以将电路面积减小20倍,而输出功率则提高6%; 3)提出的自下而上的方法使设计人员能够识别系统瓶颈并相应地提高性能。

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