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Thermoelectric energy scavenging and performance improvement in thermally constrained mobile computers

机译:热电受约束移动计算机的热电能扫气和性能改进

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Thermoelectric (TE) energy harvesting is investigated in this study for compact mobile computers. A suitable hotspot is identified for TE integration based on thermal modeling and characterization of a target system. Under maximum workload conditions, 0.410 mW of electrical power is thermoelectrically harvested without any notable degradation in performance. An enhancement to the system thermal design is proposed for a projected 240% improvement in harvested power and 4% improvement in CPU+GMCH thermal design power (TDP) envelop. Calculations suggest 10% increase in Seebeck efficiency of new TE materials will increase the power generation by an additional 10%, and TDP envelop by an additional 3%.
机译:在本研究中对紧凑型移动计算机进行了热电(TE)能量收集。基于目标系统的热建模和表征,识别出合适的热点。在最大工作量条件下,电力0.410兆瓦的电力收获,无需任何显着的性能降解。提出了对系统热设计的增强,提出了预计的240%的收获功率提高,CPU + GMCH热设计功率(TDP)包围的4%改善。计算表明,新TE材料的塞贝克效率提高了10%,将增加10%的发电,而TDP则额外增加3%。

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