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Quantitative Feedback Theory design of robust MPPT controller for Small Wind Energy Conversion Systems: Design, analysis and experimental study

机译:小型风能转换系统鲁棒MPPT控制器的定量反馈理论设计:设计,分析和实验研究

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This paper addresses the design of a robust Maximum Power Point Tracking (MPPT) controller for a small wind energy conversion system fed by a Permanent Magnet Synchronous Generator (PMSG). The proposed MPPT controls the generator rectified voltage instead of the rotational speed avoiding the need for a mechanical sensor. Traditionally, this control problem is performed using a Proportional Integrator (PI) controller optimised at a specific operating point. However, the PI controller does not guarantee the promising transient performance under changing operating conditions. In this work, the Quantitative Feedback Theory (QFT) has been applied to synthesis a robust DC-voltage controller to ensure a robust stability and tracking specifications for all operating points. The performance of the designed controller has been compared with the classical PI controller experimentally on laboratory benchmark. The experimental results prove that the proposed controller outperforms the conventional PI controller reducing the overshoot between 26.67% and 82.53% and the response time between 36.36% and 71.33%, reducing by the way the mechanical stress on the PMSG under a turbulent wind speed profile. In addition, the extracted electrical energy using the proposed controller over 90 s of a typical wind speed profile is 1.7015% higher.
机译:本文介绍了一种强大的最大功率点跟踪(MPPT)控制器的设计,该控制器用于由永磁同步发电机(PMSG)供电的小型风能转换系统。所提出的MPPT控制发电机整流电压而不是转速,从而避免了对机械传感器的需求。传统上,此控制问题是使用在特定工作点优化的比例积分(PI)控制器执行的。但是,PI控制器不能保证在不断变化的工作条件下有希望的瞬态性能。在这项工作中,定量反馈理论(QFT)已用于综合鲁棒的DC电压控制器,以确保所有工作点的鲁棒稳定性和跟踪规格。在实验室基准测试中,已将设计的控制器的性能与经典PI控制器进行了实验比较。实验结果表明,所提出的控制器性能优于传统的PI控制器,减少了26.67%至82.53%的过冲,并减少了36.36%至71.33%的响应时间,并通过在风速变化的情况下减小了PMSG的机械应力。此外,使用建议的控制器在90 s的典型风速曲线中提取的电能要高出1.7015%。

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