Adaptive Integrated Coordinated Control Strategy Based on Sliding Mode Control for MMC-MTDC

Wang Chen, Wang Anna, Z. Tao, Zhang Hualiang
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引用次数: 2

Abstract

Traditional double closed-loop PI control and DC voltage-active power droop control are suitable for the modular multilevel converter based Multi terminal flexible DC transmission system (MMC-MTDC). However, due to the strong nonlinearity of the system and the fixed droop coefficient, the system has poor stability under transient conditions, which is prone to full load. In order to improve the response speed and stability of the system, an adaptive integrated coordinated control strategy based on sliding mode theory is proposed. The strategy adopts a double closed loop cascade control structure, the outer-loop controller performs adaptive droop control based on the comparison of the MMC real-time power margin with the power reference command, and the inner-loop controller is designed based on a sliding film variable structure with current error as the sliding film plane. The simulation model of MMCMTDC direct current transmission system was built in PSCAD/EMTDC. The simulation results of the proposed control strategy show that the control strategy can effectively avoid the full load margin of the system when the MMC is small, and the strategy also can improve the adaptability and dynamic performance of the system compared with the traditional control strategy.
基于滑模控制的MMC-MTDC自适应集成协调控制策略
传统的双闭环PI控制和直流电压有功下垂控制适用于基于模块化多电平变换器的多端柔性直流输电系统。但由于系统非线性强,下垂系数固定,系统在暂态条件下稳定性差,容易出现满负荷。为了提高系统的响应速度和稳定性,提出了一种基于滑模理论的自适应集成协调控制策略。该策略采用双闭环串级控制结构,外环控制器基于MMC实时功率余量与功率参考命令的比较进行自适应垂降控制,内环控制器基于以电流误差为滑动膜平面的滑动膜变结构设计。在PSCAD/EMTDC中建立了MMCMTDC直流输电系统的仿真模型。仿真结果表明,该控制策略能有效避免系统在MMC较小时的满负荷裕度,与传统控制策略相比,该控制策略还能提高系统的自适应性和动态性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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