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Maximum power Point Tracking control of thermoelectric generation system using extremum seeking control method

机译:基于极值搜索控制方法的热电发电系统最大功率点跟踪控制

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摘要

This study proposes and implements maximum power Point Tracking (MPPT) control on thermoelectric generation system using extremum seeking control (ESC) algorithm. The MPPT is applied to guarantee maximum power extraction from the TEG system. The work has been carried out through modelling of thermoelectric generator/dc-dc converter system using Matlab/Simulink. The effectiveness of ESC technique has been assessed by comparing the results with those of the Perturb and observe (P&O) MPPT method under the same operating conditions. Results indicate that ESC MPPT method extracts more power than P&O technique, where the output power of ESC technique is higher than that of P&O by 0.47 W or 6.1% at a hot side temperature of 200⁰C. It is also noted that the ESC MPPT based model is almost fourfold faster than the P&O method. This is attributed to smaller MPPT circuit of ESC compared to that of P&O. Hence, ESC MPPT method outperforms the P&O technique.
机译:这项研究提出并实现了使用极值搜索控制(ESC)算法的热电发电系统的最大功率点跟踪(MPPT)控制。 MPPT用于确保从TEG系统提取最大功率。该工作是通过使用Matlab / Simulink对热电发电机/ dc-dc转换器系统进行建模来完成的。通过在相同操作条件下将结果与Perturb和观察(P&O)MPPT方法进行比较,评估了ESC技术的有效性。结果表明,ESC MPPT方法比P&O技术可提取更多的功率,在200°C的热侧温度下,ESC技术的输出功率比P&O的输出功率高0.47 W或6.1%。还应注意,基于ESC MPPT的模型几乎比P&O方法快四倍。这是因为与P&O相比,ESC的MPPT电路更小。因此,ESC MPPT方法优于P&O技术。

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