Averaged Controllability Of Transversely Isotropic Ambartsumyan Plate

A. Avetisyan, H. Jilavyan, A. Khurshudyan
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Abstract

In this paper we study the averaged controllability of Ambartsumyan plate made of a transversely isotropic material. Governing equations are based on assumptions of particular theory of anisotropic plates developed by S. A. Ambartsumyan specifically for describing the deformation of anisotropic plates made of material with isotropy plane which, at each point of the plate, is parallel to its middle plane. The Green’s function approach is applied to express the plate normal displacement by means of material parameters (density, Young moduli in both directions of isotropy) which are assumed to be uniformly distributed random variables. Eventually, the averaged controllability condition is reduced to an infinite system of linear constraints with respect to the control action. Three types of particular (heuristic) solutions of the truncated version of the infinite system are discussed. Determination of control parameters is reduced to the solution of a problem of nonlinear programming.
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横观各向同性阿姆巴苏木板块的平均可控性
本文研究了横观各向同性材料制成的ambarsumyan板的平均可控性。控制方程基于S. A. Ambartsumyan提出的各向异性板的特定理论假设,该理论专门用于描述各向异性板的变形,各向异性板的各向异性面是由各向同性平面的材料制成的,在各向异性板的每一点都平行于其中间平面。将材料参数(密度、各向同性两个方向的杨氏模量)假定为均匀分布的随机变量,采用格林函数法表示板的法向位移。最后,将平均可控性条件简化为关于控制作用的线性约束的无穷系统。讨论了无穷系统截短型的三种特解(启发式)。控制参数的确定被简化为求解一个非线性规划问题。
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