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Non-iterative Cauchy kernel-based maximum correntropy cubature Kalman filter for non-Gaussian systems 被引量:1
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作者 Aastha Dak Rahul Radhakrishnan 《Control Theory and Technology》 EI CSCD 2022年第4期465-474,共10页
This article addresses the nonlinear state estimation problem where the conventional Gaussian assumption is completely relaxed.Here,the uncertainties in process and measurements are assumed non-Gaussian,such that the ... This article addresses the nonlinear state estimation problem where the conventional Gaussian assumption is completely relaxed.Here,the uncertainties in process and measurements are assumed non-Gaussian,such that the maximum correntropy criterion(MCC)is chosen to replace the conventional minimum mean square error criterion.Furthermore,the MCC is realized using Gaussian as well as Cauchy kernels by defining an appropriate cost function.Simulation results demonstrate the superior estimation accuracy of the developed estimators for two nonlinear estimation problems. 展开更多
关键词 Maximum correntropy criterion Cubature Kalman filter Non-Gaussian noise cauchy kernel Gaussian kernel
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SINGULAR INTEGRAL DIFFERENTIAL EQUATIONS WITH BOTH CAUCHY KERNEL AND CONVOLUTION KERNEL AND RIEMANN BOUNDARY VALUE PROBLEM
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作者 Pingrun Li 《Annals of Differential Equations》 2014年第4期407-415,共9页
In this paper, we set up and discuss a kind of singular integral differential equation with convolution kernel and Canchy kernel. By Fourier transform and some lemmas, we turn this class of equations into Riemann boun... In this paper, we set up and discuss a kind of singular integral differential equation with convolution kernel and Canchy kernel. By Fourier transform and some lemmas, we turn this class of equations into Riemann boundary value problems, and obtain the general solution and the condition of solvability in class {0}. 展开更多
关键词 cauchy kernel convolution kernel Fourier transform singular integral-differential equations
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ON THE METHOD OF SOLUTION FOR A KIND OFNONLINEAR SINGULAR INTEGRAL EQUATION 被引量:4
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作者 LuJianke 《Acta Mathematica Scientia》 SCIE CSCD 2004年第3期507-512,共6页
The solutions of the nonlinear singular integral equation , t 6 L, are considered, where L is a closed contour in the complex plane, b ≠ 0 is a constant and f(t) is a polynomial. It is an extension of the results obt... The solutions of the nonlinear singular integral equation , t 6 L, are considered, where L is a closed contour in the complex plane, b ≠ 0 is a constant and f(t) is a polynomial. It is an extension of the results obtained in [1] when f(t) is a constant. Certain special cases are illustrated. 展开更多
关键词 Singular integral equation with cauchy kernel Riemann boundary value problem with square roots modified principal part Plemelj formula
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ON THE ESTIMATION OF GENERALIZED LEBESGUE CONSTANT AND MODULUS OF GENERALIZED SINGULAR QUADRATURE FORMULAS AND ITS APPLICATION
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作者 蔡好涛 杜金元 《Acta Mathematica Scientia》 SCIE CSCD 2006年第4期610-614,共5页
This article, first gives the estimaties of two modulus, namely, generalized Lebesgue constant and modulus of generalized singular integral quadrature formulas, then applies them to obtain the error bounds of the oper... This article, first gives the estimaties of two modulus, namely, generalized Lebesgue constant and modulus of generalized singular integral quadrature formulas, then applies them to obtain the error bounds of the operator BL^Pm to the operator B. 展开更多
关键词 cauchy kernel Dini conditions generalized Jacobi weight
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Gamma Functions and Siegel Integrals on Nonselfdual Cones
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作者 赵晓霞 林萍 殷慰萍 《Chinese Quarterly Journal of Mathematics》 CSCD 1999年第1期88-101, ,共14页
In this paper,we will define Gamma functions and Siegel integrals on nonselfdual cones and give some applications.
关键词 Gamma function Siegel integral cauchy Szeg kernel formal poisson kernel
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ON THE METHOD OF SOLVING TWO KINDS OF CONVOLUTION SINGULAR INTEGRAL EQUATIONS WITH REFLECTION 被引量:2
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作者 Pingrun Li 《Annals of Differential Equations》 2013年第2期159-166,共8页
In this paper, two kinds of convolution integral equations with both Cauchy kernel and reflection are discussed. Using Fourier transformation theory they can be transformed into Riemann boundary value problems with bo... In this paper, two kinds of convolution integral equations with both Cauchy kernel and reflection are discussed. Using Fourier transformation theory they can be transformed into Riemann boundary value problems with both discontinuous coefficients and reflection. And we give a new method, by which the general solution and the condition of solvability are obtained respectively. 展开更多
关键词 singular integral equation of convolution type Riemann boundary value problem cauchy kernel REFLECTION translation shift
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Cortical Bone Model with a Microcrack under Tensile Loading
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作者 WANG Xu CHEN Yaogeng +2 位作者 DING Shenghu WANG Wenshuai LI Xing 《Wuhan University Journal of Natural Sciences》 CAS CSCD 2022年第5期375-382,共8页
The fracture mechanics of cortical bone has received much attention in biomedical engineering.It is a fundamental question how the material constants and the geometric parameters of the cortical bone affect the fractu... The fracture mechanics of cortical bone has received much attention in biomedical engineering.It is a fundamental question how the material constants and the geometric parameters of the cortical bone affect the fracture behavior of the cortical bone.In this work,the plane problem for cortical bone with a microcrack located in the interstitial tissue under tensile loading was considered.Using the solution for the continuously distributed edge dislocations as Green ’ s functions,the problem was formulated as singular integral equations with Cauchy kernels.The numerical results suggest that a soft osteon promotes microcrack propagation,while a stiff osteon repels it,but the interaction effect between the microcrack and the osteon is limited near the osteon.This study not only sheds light on the fracture mechanics behavior of cortical bone but also offers inspiration for the design of bioinspired materials in biomedical engineering. 展开更多
关键词 cortical bone MICROCRACK singular integral equation cauchy kernel stress intensity factor
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