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Steady state reliability of maximum power point tracking algorithms used with a thermoelectric generator

机译:热电发电机使用的最大功率点跟踪算法的稳态可靠性

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A thermoelectric generator (TEG) with its near linear V-I characteristic makes its operation distinct from a photovoltaic (PV) cell. However, when maximum power point tracking (MPPT) is implemented in TEG power electronic systems, the established knowledge and wisdom surrounding PV oriented MPPT systems is often applied directly without consideration of the TEG's characteristics. Unsuitable MPPT algorithms generate large operating point variations thus deteriorating the steady state performance of the TEG. Therefore an algorithm that can reliably deliver power with low steady state error over a range of operating conditions is desired. This paper compares three common MPPT methods (perturb and observe, power gradient tracking and fractional open-circuit voltage / short-circuit current), in terms of their steady state performance and reliability, when used with a 4.2 V, 3.4 A (for matched load at ΔT = 270°C) TEG module. Experimental results are reported that confirm better and more reliable steady state performance of the fractional open-circuit voltage / short-circuit current method compared to the perturb and observe and power gradient tracking algorithms.
机译:具有接近线性V-I特性的热电发电机(TEG)使其工作方式不同于光伏(PV)电池。但是,当在TEG电力电子系统中实现最大功率点跟踪(MPPT)时,围绕PV定向MPPT系统的已建立的常识和常识通常直接应用而无需考虑TEG的特性。不合适的MPPT算法会产生较大的工作点变化,从而使TEG的稳态性能恶化。因此,需要一种能够在一定范围的工作条件下可靠地传递具有低稳态误差的功率的算法。本文比较了三种常见的MPPT方法(在4.2 V,3.4 A下使用时的稳态性能和可靠性)(扰动和观察,功率梯度跟踪和分数开路电压/短路电流)负载在ΔT= 270°C时)TEG模块。实验结果表明,与扰动观察和功率梯度跟踪算法相比,分数开路电压/短路电流方法具有更好,更可靠的稳态性能。

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