兰州理工大学学报 ›› 2023, Vol. 49 ›› Issue (4): 82-87.

• 自动化技术与计算机技术 • 上一篇    下一篇

基于滑模预测的T型并网变换器控制研究

姜雅飞*1, 赵刚2   

  1. 1.江苏航运职业技术学院 轮机工程系, 江苏 南通 226010;
    2.西安交通大学 电力设备电气绝缘国家重点实验室, 陕西 西安 710048
  • 收稿日期:2021-07-29 出版日期:2023-08-28 发布日期:2023-08-29
  • 通讯作者: 姜雅飞(1980-),男,江苏南通人,硕士,副教授. Email:jiangyafei2021@163.com

Control research on T-type grid-connected converter based on sliding mode predictive

JIANG Ya-fei1, ZHAO Gang2   

  1. 1. Marine Engineering Department, Jiangsu Shipping College, Nantong 226010, China;
    2. State Key Laboratory of Electrical Insulation and Power Equipment, Xi’an Jiaotong University, Xi’an 710049, China
  • Received:2021-07-29 Online:2023-08-28 Published:2023-08-29

摘要: 模型预测控制具有便于植入、可实现多目标跟踪等优点,但是传统的模型预测控制算法开关状态不固定,会降低电流跟踪精度,甚至产生较大的电流纹波.基于此,提出了一种基于模型预测直接功率定频控制(DPCMPC)和滑模(sliding-mode control,SMC)外环控制的双闭环控制方法.利用SMC外环得到系统有功功率的给定值,通过引入零电压矢量改善系统稳态性能,减小功率脉动.为验证理论分析的正确性,构建了完整的仿真与实验测试模型,结果表明该控制方法具有良好的稳态和动态性能.

关键词: T型变换器, 模型预测控制, 滑模控制, 直接功率控制, 定频控制

Abstract: Model predictive control (MPC) has been widely used in grid-connected converter control systems with the advantages, such as easy implantation and multi-target tracking. However, the unfixed switching state of the traditional model predictive control algorithm will reduce the accuracy of current tracking and even produce large current ripple. Therefore, a double closed loop control method based on model predictive direct power fixed frequency control (DPCMPC) and sliding mode control (SMC) is proposed. The SMC outer ring is used to obtain a given value of the active power of the system, and the steady-state performance of the system is improved by introducing a zero voltage vector and the power ripple is reduced. In order to verify the theoretical analysis, a complete simulation and experimental test model was constructed, and the results show that the proposed control method has good steady-state and dynamic performance.

Key words: T-type grid-connected converter, finite set model predictive, sliding mode control, direct power control, fixed frequency control

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