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FPGA-based Digital Implementation of Flexible Power Control for Three-phase to Single-phase MMC-based Advanced Co-phase Traction Power Supply System

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摘要 A three-phase to single-phase modular multilevel converter based advanced co-phase traction power supply(MMC-ACTPS) system is an effective structure to address the concerns of phase splitting and poor power quality of the conventional electrified railway. Due to the large number of MMCACTPS system modules, I/O resources and computing speed have high requirements on processors. Moreover, the module capacitor balance is challenging because the sorting time is too long when the traditional sorting algorithm for voltage balance is used. To solve the above issues, a digital implementation scheme of flexible power control strategy for three-phase to single-phase MMC-ACTPS system based on field programmable gate array(FPGA), which has sufficient I/O resources, has been proposed. Due to the parallel execution characteristics of the FPGA, the execution time of the controller and the modulator can be greatly reduced compared with a digital signal processor(DSP) + FPGA or DSpace. In addition, an improved sorting algorithm is proposed to reduce the sorting time and the implementation steps are analyzed. Finally, simulation and experimental results are presented to demonstrate the effectiveness and correctness of the proposed control strategy.
出处 《Journal of Modern Power Systems and Clean Energy》 SCIE EI CSCD 2023年第6期2015-2027,共13页 现代电力系统与清洁能源学报(英文)
基金 supported in part by the National Rail Transportation Electrification and Automation Engineering Technology Research Center (No.NEEC-2019-A04) in part by the National Key R&D Program of China (No.2021YFB2601500) in part by the National Natural Science Foundation of China (No.52077183) the National Science Foundation for Young Scientists of China (No.52207138)。
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