VSC-HVDC输电系统非线性最优控制

G. Rigatos, P. Siano, S. Ademi, P. Wira
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引用次数: 0

摘要

针对电压源变换器-高压直流输电系统的控制问题,提出了一种非线性h∞(最优)控制方法。对直流-高压直流输电系统的动态模型进行了近似线性化处理。该局部平衡由VSC-HVDC模型状态向量的现值和施加于其上的控制输入的最后值组成,并在每个时刻重新计算。为了实现这种线性化,进行了泰勒级数展开和相关雅可比矩阵的计算。控制方案的鲁棒性允许补偿建模误差,这是由于泰勒展开式的截断高阶项。其次,设计了h∞反馈控制器。在控制算法的每次迭代中求解代数Riccati方程后,计算反馈增益。利用李雅普诺夫稳定性分析证明了控制回路满足h∞跟踪性能准则。这也表明对模型不确定性和外部扰动的鲁棒性提高。此外,在中等条件下,证明了控制回路是全局渐近稳定的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear optimal control for the VSC-HVDC transmission system
A nonlinear H-infinity (optimal) control method is proposed for the problem of control of the VSC-HVDC transmission system (Voltage Source Converter - High Voltage DC transmission system). Approximate linearization, round a local operating point, is performed for the dynamic model of the VSC-HVDC transmission system. This local equilibrium consists of the present value of the state vector of the VSC-HVDC model and of the last value of the control input that was exerted on it, and is re-calculated at each time instant. To accomplish this linearization, Taylor series expansion and the computation of the associated Jacobian matrices are performed. The robustness of the control scheme allows to compensate for the modelling error which is due to truncation of higher order terms from the Taylor expansion. Next, an H-infinity feedback controller is designed. After solving an algebraic Riccati equation at each iteration of the control algorithm, the feedback gain is computed. Lyapunov stability analysis is used to prove that the control loop satisfies an H-infinity tracking performance criterion. This also indicates elevated robustness to model uncertainty and external perturbations. Moreover, under moderate conditions it is proven that the control loop is globally asymptotically stable.
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