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Linearized control technique with Lyapunov function-based compensators for MMC-based HVDC system under load variation and fault condition

机译:基于Lyapunov功能的基于MMC的HVDC系统的线性化控制技术在负载变化和故障状态下

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摘要

This paper presents a control strategy based on the input-output feedback linearization (IOFL) theory and a new control inputs-based Lyapunov function to reach the control aims for a back-to-back MMC structure in HVDC transmission applications. The initial schemes of proposed control inputs are firstly obtained by the use of proposed IOFL applied to a mathematical description of MMC. In order to complete these control inputs from the viewpoint of HVDC system stability, a new Lyapunov energy function due to the dynamics of the control inputs is defined for designing some filter compensators to execute more accurate tracking of the state variables errors fluctuations. Also, a balancing method with high simplicity is appended to main controller for the MMCs capacitors voltages regulation. In another side, it is assessed that how the d and q components of circulating currents can affect upon the proposed control inputs through analyzing their closed-loop systems. Moreover, relying on proposed control strategy, mutual effects of circulating current on the MMC output currents are comprehensively evaluated in this paper. Simulation results in MATLAB/SIMULINK software are utilized to confirm the ability of proposed control strategy at proving stable performance for MMC in HVDC application.
机译:本文介绍了基于输入输出反馈线性化(IOFL)理论的控制策略,以及基于新的控制输入的Lyapunov函数,以达到控制器的HVDC传输应用中的背对背MMC结构。首先通过使用应用于MMC的数学描述的所提出的IOF1来获得所提出的控制输入的初始方案。为了从HVDC系统稳定性的观点来完成这些控制输入,由于设计了用于控制输入输入的动态的新Lyapunov能量功能,用于设计一些滤波器补偿器以执行更准确的状态变量误差波动的跟踪。而且,附加到具有高简单性的平衡方法,用于MMCS电容器电压调节的主控制器。在另一方面,评估循环电流的D和Q分量如何通过分析其闭环系统来影响所提出的控制输入。此外,依赖于提出的控制策略,本文综合评估了循环电流对MMC输出电流的相互影响。 MATLAB / SIMULINK软件的仿真结果用于确认在HVDC应用中对MMC稳定性能的提出控制策略的能力。

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