Cubature Kalman Fusion Filtering Under Amplify-and-Forward Relays With Randomly Varying Channel Parameters

被引:0
|
作者
Jiaxing Li [1 ]
Zidong Wang [2 ,3 ]
Jun Hu [2 ,1 ,4 ]
Hongli Dong [2 ,5 ,6 ,7 ]
Hongjian Liu [8 ,9 ]
机构
[1] the Department of Applied Mathematics, Harbin University of Science and Technology
[2] IEEE
[3] the Department of Computer Science, Brunel University London
[4] the School of Automation, Harbin University of Science and Technology
[5] the Artificial Intelligence Energy Research Institute, Northeast Petroleum University
[6] the Heilongjiang Provincial Key Laboratory of Networking and Intelligent Control, Northeast Petroleum University
[7] the National Key Laboratory of Continental Shale Oil of China, Northeast Petroleum University
[8] the Key Laboratory of Advanced Perception and Intelligent Control of High-End Equipment, Ministry of Education, Anhui Polytechnic University
[9] the School of Mathematics and Physics, Anhui Polytechnic
关键词
D O I
暂无
中图分类号
TM58 [继电器]; TP212 [发送器(变换器)、传感器]; TN713 [滤波技术、滤波器];
学科分类号
080202 ;
摘要
In this paper, the problem of cubature Kalman fusion filtering(CKFF) is addressed for multi-sensor systems under amplify-and-forward(AaF) relays. For the purpose of facilitating data transmission, AaF relays are utilized to regulate signal communication between sensors and filters. Here, the randomly varying channel parameters are represented by a set of stochastic variables whose occurring probabilities are permitted to exhibit bounded uncertainty. Employing the spherical-radial cubature principle, a local filter under AaF relays is initially constructed. This construction ensures and minimizes an upper bound of the filtering error covariance by designing an appropriate filter gain. Subsequently, the local filters are fused through the application of the covariance intersection fusion rule. Furthermore, the uniform boundedness of the filtering error covariance's upper bound is investigated through establishing certain sufficient conditions. The effectiveness of the proposed CKFF scheme is ultimately validated via a simulation experiment concentrating on a three-phase induction machine.
引用
收藏
页码:356 / 368
页数:13
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