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An optimized MPPT circuit for thermoelectric energy harvester for low power applications

机译:用于低功耗应用的热电能收割机优化的MPPT电路

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A novel approach of maximum power point tracking (MPPT) control method for thermoelectric generator (TEG) is reported in this paper. The maximum power point tracking is achieved by using impedance matching principle. Unlike the existing MPPT methods, the proposed implementation does not require any voltage and current sensors and computations of any nature. The implementation of the MPPT control circuit is carried out using buck-boost DC/DC converter and a simple gating signal generator using only one Op-amp. The proposed method needs the least power consumption of the MPPT control circuit — less than 250μW. Experimental tests results obtained from series connected 3×TEGs (24 mm × 6 mm) show an average power harvesting of 5.6mW at ΔT of 24°C. The proposed thermoelectric energy harvester is used to power a battery which subsequently feeds a sensor node. The low power thermoelectric energy harvester system provides an overall power management circuit efficiency of up to 85%. The efficiency calculation takes care of power losses in the MPPT circuit.
机译:本文报道了一种用于热电发电机(TEG)的最大功率点跟踪(MPPT)控制方法的新方法。通过使用阻抗匹配原理来实现最大功率点跟踪。与现有的MPPT方法不同,所提出的实施不需要任何电压和电流传感器和任何自然的计算。 MPPT控制电路的实现是使用降压 - 升压DC / DC转换器和仅使用一个OP-AMP的简单门控信号发生器进行的。所提出的方法需要MPPT控制电路的最小功耗 - 小于250μ w。从串联3&#x00d7获得的实验测试结果。TEGS(24 mm× 6 mm)显示了5.6mw at° t的平均功率收获。所提出的热电能量收割机用于为随后馈送传感器节点的电池供电。低功耗热电能收割机系统提供高达85%的总电源管理电路效率。效率计算负责MPPT电路中的功率损耗。

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