基于集值观测器的风能转换系统多类型故障检测的设计  被引量:1

Multi-type fault detection design of wind energy conversion systems via set-valued observer

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作  者:赵睿楠 沈艳霞[1] ZHAO Rui-nan;SHEN Yan-xia(School of IoT Engineering,Jiangnan University,Wuxi Jiangsu 214122,China)

机构地区:[1]江南大学物联网工程学院,江苏无锡214122

出  处:《控制理论与应用》2021年第2期187-196,共10页Control Theory & Applications

基  金:国家自然科学基金项目(61164015,61305132);中央高校基本科研基金项目(JUSRP31106,JUSRP51510);江苏省研究生创新培养工程项目(KYCX17_1459)资助。

摘  要:针对受延时输入影响的风能转换系统的故障检测问题,本文设计了基于集值观测器的故障检测策略.风能转换系统常见故障可以区分为加性故障与乘性故障,本文对增广统一风能转换系统模型,设计一种全局集值观测器,通过改变所选择的状态集顶点和参考误差区间,改变增益矩阵元素的取值范围,选择合适的增益矩阵,实现精确的状态跟踪.在此基础上设计了同时考虑状态相对估计误差与输出的绝对估计误差的故障检测策略.仿真结果表明,本文设计的故障检测策略对常见多类型故障可以做出快速的故障判断.对比Rosa所设计的故障检测策略,该研究在故障检测时间上具有明显优势.The fault detection(FD)strategies based on set-valued observer(SVO)are designed in this paper to deal with the problem of FD of wind energy conversion systems(WECSs)affected by delayed input.The common faults of WECSs can be divided into additive faults and multiplicative faults.For the augmented unified model of WECS,a global SVO is designed to achieve accurate state tracking by changing the selected state sets vertexes and reference error intervals,changing the value ranges of the gain matrix elements,and selecting the appropriate gain matrix.On this basis,the fault detection strategies which considered both the relative estimation errors of state and the absolute estimation error of output are designed.The simulation results show that the designed FD strategies can offer rapid fault determination for common multi-type faults.Comparing with the FD strategies designed by Rosa,this research has obvious advantages in the time of FD.

关 键 词:延时输入 风能转换系统 集值观测器 多类型故障 故障检测 

分 类 号:TM614[电气工程—电力系统及自动化]

 

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