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首页> 外文期刊>IEEE Transactions on Power Systems >Multivariable Adaptive Control of Synchronous Machines in a Multimachine Power System
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Multivariable Adaptive Control of Synchronous Machines in a Multimachine Power System

机译:多机动力系统中同步机的多变量自适应控制

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摘要

A multivariable self-tuning adaptive control scheme used to enhance power system stability in a multimachine environment is presented. The controller is implemented locally for individual generators with supplementary stabilizing signals through the AVR and governor. A discrete multivariable state space model is developed to represent the generator. The recursive subspace identification method based on the projection approximation subspace tracking approach is employed to update generator model parameters online. A generalized predictive control strategy with constraints on the control signals is used. Simulations studies carried out on a five-machine power system without infinite bus show that the proposed multivariable adaptive controller is effective in damping both local and interarea mode oscillations under small as well as large disturbances. The self-coordinating ability of the adaptive controller with the existing conventional controllers is also demonstrated
机译:提出了一种用于提高多机环境下电力系统稳定性的多变量自整定自适应控制方案。控制器通过AVR和调速器在本地为单个发电机实施,并带有补充稳定信号。建立了离散的多变量状态空间模型来表示生成器。采用基于投影逼近子空间跟踪方法的递归子空间识别方法在线更新发电机模型参数。使用了对控制信号有约束的广义预测控制策略。在不带无限总线的五机动力系统上进行的仿真研究表明,所提出的多变量自适应控制器可有效地抑制在大小扰动下的局域和区间模式振荡。还展示了自适应控制器与现有常规控制器的自协调能力

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