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首页> 外文期刊>Journal of power electronics >Practical Implementation of Maximum Power Tracking Based Short-Current Pulse Method for Thermoelectric Generators Systems
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Practical Implementation of Maximum Power Tracking Based Short-Current Pulse Method for Thermoelectric Generators Systems

机译:基于最大功率跟踪的热电发电机系统短电流脉冲法的实际实现

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摘要

The applications of thermoelectric generators (TEGs) have received a lot of attention both in terms of harvesting waste thermal energy and the need for multi-levels of power. It is critical to track the optimum electrical operating point using DC to DC converters controlled by a pulse that is generated through a maximum power point tracking algorithm (MPPT). In this paper, the hardware implementation of a short-current pulse algorithm has been demonstrated under steady stated and transient conditions. In addition, the MPPT algorithm has been proposed, which is one of the most effective and applicable algorithms for obtaining the maximum power point of TEGs. During this study, the proposed prototype has been validated both analytically and experimentally. It has also demonstrated successful performance, which highlights the claimed advantages of the proposed MPPT solution.
机译:无论是在收集废热能还是对多级功率的需求方面,热电发电机(TEG)的应用都受到了广泛的关注。使用由最大功率点跟踪算法(MPPT)产生的脉冲控制的DC-DC转换器跟踪最佳电气工作点至关重要。在本文中,已经证明了在稳定陈述和瞬态条件下短路电流脉冲算法的硬件实现。另外,提出了MPPT算法,它是获得TEG最大功率点的最有效和最适用的算法之一。在这项研究过程中,所提出的原型已通过分析和实验验证。它还展示了成功的性能,突出了所提出的MPPT解决方案的优势。

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