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Load alteration fault detection and reconstruction in power networks modelled in semi-explicit differential algebraic equation form

机译:以半显式微分代数方程形式建模的电网负荷变化故障检测与重构

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In this paper a sliding mode observer is proposed to detect and reconstruct load alteration failures in a power network. The power network, specifically a 9-bus IEEE benchmark model, is modelled as a semi-explicit class of differential algebraic equations (DAEs). Only the phase angle of the generators, a subset of the differential states of the DAE, are assumed to be measured. The objective is to estimate simultaneously the phase angles, the frequencies of the generators (differential states), the phase angles of the load bus tensions (algebraic states) of the power network, and any exogenous signals representing disturbances and failures. The faults introduced in this paper fall into the class of load altering attacks which affect the algebraic states of the DAEs. The observer is designed based on a recently proposed multivariable super-twisting structure.
机译:在本文中,提出了一种滑模观测器,用于检测和重构电力网络中的负载变化故障。电力网络,特别是9总线IEEE基准模型,被建模为半显式微分代数方程(DAE)。假定仅测量发电机的相角(DAE的差分状态的子集)。目的是同时估计电网的相角,发电机频率(微分状态),负载母线张力的相角(代数状态)以及表示干扰和故障的任何外来信号。本文介绍的故障属于影响DAE代数状态的负载改变攻击类别。观察者是基于最近提出的多变量超扭曲结构设计的。

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