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首页> 外文期刊>European Transactions on Electrical Power >Global advanced control strategy for Modular Multilevel Converter integrated in a HVDC link
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Global advanced control strategy for Modular Multilevel Converter integrated in a HVDC link

机译:集成在HVDC链路中的模块化多电平转换器的全球高级控制策略

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摘要

Modular Multilevel Converter (MMC) is becoming a promising converter technology for high-voltage direct current transmission systems due to its high modularity, availability, and power quality. It is a multi-input-multi-output nonlinear system. The control system for MMC is required to simultaneously achieve multiple control objectives. Existing control strategies for MMC are complex and the controller parameter design is not straightforward for the nonlinear systems with highly coupled states. In view of this, a steady-state model for the MMC is developed on bilinear deviation state-space model around a working point. Based on linear quadratic regulator and least squares methods, a nonlinear polynomial feedback law is designed to simultaneously control the grid and differential currents, and the global stored energy and energy balancing between total upper and lower arms. To generate the optimal current references, a multivariable linear quadratic controller is used to regulate the total energy per leg, energy difference between each upper and lower arms, and the DC bus voltage. The proposed high-level controller depicts an original advanced control structure of MMC converter. The performance of the proposed strategy for a detailed model of 400-level MMC is evaluated using simulations in MATLAB/SIMULINK/SPS software environment.
机译:模块化多电平转换器(MMC)凭借其高模块化,高可用性和电能质量,正成为用于高压直流输电系统的有前途的转换器技术。它是一个多输入多输出非线性系统。 MMC的控制系统需要同时实现多个控制目标。 MMC的现有控制策略很复杂,并且对于具有高度耦合状态的非线性系统,控制器参数设计并不简单。鉴于此,在工作点周围的双线性偏差状态空间模型上开发了MMC的稳态模型。基于线性二次调节器和最小二乘法,设计了一种非线性多项式反馈定律,以同时控制电网和差动电流,以及全局存储的能量和上下总臂之间的能量平衡。为了生成最佳电流参考,使用多变量线性二次控制器来调节每条腿的总能量,每个上臂和下臂之间的能量差以及直流母线电压。提出的高级控制器描述了MMC转换器的原始高级控制结构。使用MATLAB / SIMULINK / SPS软件环境中的仿真评估了针对400级MMC的详细模型的拟议策略的性能。

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