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Analysis of Bi-Te Based Thermoelectric Modules Connected to Square Series-Parallel Configuration with Isolated Power Electronics Converter for DC Micro-grid Applications

机译:用于DC微电网应用的隔离功率电子转换器的双TE基于热电模块的双TE热电模块分析

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摘要

This research paper offers a thermoelectric energy harvesting system that makes use of the heat generated within the stator windings of a wind generator in the operation of a 1.25MW wind turbine. A single thermoelectric generator can generate only lower power. To deliver higher output power, the Bi-Te based thermoelectric modules (TEMs) may be associated as an array. The square series-parallel configuration is adopted in this work owing to the advantage of unaffected internal resistance value for any quantity of TEMs. The power generated by the TEMs is unsteady owing to irregular wind velocity. Therefore, a power converter is desired before the load. The proposed energy harvesting system makes use of an isolated converter that has the benefits of better efficiency, higher voltage gain, and ability for supplying a DC micro-grid system. Furthermore, a maximum power point tracking (MPPT) is required, since no matching exists between the total internal resistance of modules and load resistance. In this work, the incremental conductance MPPT technique is used to track the maximum power at every instant of time. The performance of the proposed isolated converter has been compared with other similar converters and the results obtained are tabulated to prove the effectiveness. From the acquired experimental results, it is observed that the proposed system produces a voltage gain of 29, steadier output power during the dynamics of load and efficiency of 91.35% at a wind velocity of 12.9m/s.
机译:该研究纸具有热电能量收集系统,该系统在1.25MW风力涡轮机的操作中利用风力发生器的定子绕组内产生的热量。单个热电发电机只能产生较低的功率。为了提供更高的输出功率,基于Bi-Te的热电模块(TEM)可以与阵列相关联。由于任何数量的TEM都有未受影响的内阻值的优势,采用平方系列平行配置。由于风速不规则,TEM产生的功率不稳定。因此,在负载之前需要功率转换器。所提出的能量收集系统利用隔离转换器,具有更好的效率,更高的电压增益和提供DC微电网系统的能力的优势。此外,需要最大功率点跟踪(MPPT),因为模块的总内部电阻与负载电阻之间没有匹配。在这项工作中,增量电导MPPT技术用于跟踪每个时刻的最大功率。所提出的隔离转换器的性能已经与其他类似的转换器相比,得到的结果列来证明有效性。从所获得的实验结果中,观察到所提出的系统在负荷动力学期间产生29的电压增益,在风速下为91.35%的效率为12.9m / s。

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