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Maximum Power Point Tracking Converter Based on the Open-Circuit Voltage Method for Thermoelectric Generators

机译:基于开路电压法的热电发电机最大功率点跟踪转换器

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摘要

Thermoelectric generators (TEGs) convert heat energy into electricity in a quantity dependent on the temperature difference across them and the electrical load applied. It is critical to track the optimum electrical operating point through the use of power electronic converters controlled by a maximum power point tracking (MPPT) algorithm. The MPPT method based on the open-circuit voltage is arguably the most suitable for the linear electrical characteristic of TEGs. This paper presents an innovative way to perform the open-circuit voltage measure during the pseudonormal operation of the interfacing power electronic converter. The proposed MPPT technique is supported by theoretical analysis and used to control a synchronous Buck–Boost converter. The prototype MPPT converter is controlled by an inexpensive microcontroller, and a lead-acid battery is used to accumulate the harvested energy. Experimental results using commercial TEG devices prove that the converter accurately tracks the maximum power point during thermal transients. Precise measurements in the steady state show that the converter finds the maximum power point with a tracking efficiency of 99.85%.
机译:热电发电机(TEG)将热能转换成电能,其数量取决于它们之间的温差和所施加的电负载。通过使用由最大功率点跟踪(MPPT)算法控制的功率电子转换器来跟踪最佳电气工作点至关重要。可以说,基于开路电压的MPPT方法最适合TEG的线性电气特性。本文提出了一种在接口功率电子转换器的伪正常运行期间执行开路电压测量的创新方法。理论分析支持所提出的MPPT技术,并用于控制同步Buck-Boost转换器。原型MPPT转换器由廉价的微控制器控制,铅酸电池用于积累所收集的能量。使用商用TEG器件的实验结果证明,该转换器可在热瞬态期间准确跟踪最大功率点。稳定状态下的精确测量表明,转换器找到了最大功率点,跟踪效率为99.85%。

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