热电能量收集系统

Khalid Yahya, M. Salem, Nassim A. Iqteit, Sajjad Ahmad Khan
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引用次数: 2

摘要

热电发电机(teg)及其应用因其利用废热能的能力而获得了动力。更现代的技术必须以更低的成本提供更卓越的节能应用。新技术还必须具备通过废热转化发电的能力。TEG已经证明了它的效率,以及它如何通过添加MPPT算法来增加功率流,同时降低运行成本,从而提高潜力。这些限制可以通过在TEG单元中使用低成本制造材料和自动化系统来抵消。同样重要的是要注意,使用热电发电机的每瓦成本估计为1美元/瓦。为了实现这一目标,应通过直流到直流变换器监测最佳工作点。DC到DC转换器也应该通过使用MPPT算法产生的脉冲来驱动。
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A Thermoelectric Energy Harvesting System
Thermoelectric generators (TEGs) and their applications have gained momentum for their ability to use waste thermal energy. More contemporary technology must offer more exceptional energy-efficient applications at a lower cost. New technology must also have an ability to generate electric power through the conversion of wasted heat. The TEG has demonstrated its efficiency and how it can offer increased potential by adding an MPPT algorithm to increase the power flow while decreasing the cost of operation. The limitations can be offset by the use of lower cost manufacturing materials and automated systems in the TEG units. It is also important to note the cost per watt found in using a thermoelectric generator is estimated to be $1/W for an installed device. To achieve this goal, the optimum operating point should be monitored by DC to DC converters. The DC to DC converters should also be driven through a generated pulse using an MPPT algorithm.
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