Ultra‑wideband control of harmonic power amplifier based on hybrid feed‑in adaptive compensation
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(1.Shenyang Power Supply Company,State Grid Liaoning Electric Power Co., Ltd., Shenyang 110003, China; 2. Fuxin Power Supply Company, State Grid Liaoning Electric Power Co., Ltd., Fuxin 123100, China; 3.Panjing Power Supply Company,State Grid Liaoning Electric Power Co., Ltd.,Panjing 124010, China; 4.Chaoyang Power Supply Company,State Grid Liaoning Electric Power Co., Ltd.,Chaoyang 122000, China;5. School of Automation, Nanjing University of Science and Technology, Nanjing 210094, China)

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TM46

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    Abstract:

    Power amplifiers based on power electronic converters have become one of the ideal physical interfaces for grid voltage simulation due to their flexibility and ease of control. Addressing the drawbacks of existing power amplifier control methods, which can amplify frequency deviations, cause filter circuit parameter drifts, and make it difficult to simulate high-frequency harmonics, an ultra-wideband control strategy for harmonic power amplifiers with mixed feed-in adaptive compensation is proposed. This strategy aims to accurately reproduce wideband voltage signals while balancing dynamic and steady-state performance. Next, a multivariable mixed feed-in loop is designed to compensate for the transient characteristics of the system. In the time domain, an adaptive method considering parameter drifts is derived using the Lyapunov function to compensate for uncertainties in filter parameters. The limitations of digital implementation in mixed adaptive compensation are thoroughly analyzed and overcome. The performance enhancement of the proposed method as a repeated embedded control is discussed. Finally, a prototype is built, and simulations and experiments are conducted to verify the dynamic performance and steady-state accuracy of the proposed strategy. The results indicate that compared to existing controls, the proposed method offers faster dynamic response, higher steady-state accuracy, and a wider range of harmonic frequency tracking. It can achieve rapid and error-free tracking of ultra-wideband reference voltages.

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代子阔,刘尚坤,李冰心,许向伟,汪 诚.基于混合馈入型自适应补偿的电网谐波功率放大器超宽频控制[J].电力科学与技术学报英文版,2024,39(4):245-254. DAI Zikuo, LIU Shangkun, LI Bingxin, XU Xiangwei, WANG Cheng. Ultra‑wideband control of harmonic power amplifier based on hybrid feed‑in adaptive compensation[J]. Journal of Electric Power Science and Technology,2024,39(4):245-254.

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  • Online: September 10,2024
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