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Spectral operators generated by 3-dimensional damper wave equation and applications to control theory

机译:由三维阻尼波浪方程和应用来控制理论产生的光谱运算符

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We formulate our results on the spectral analysis for a class of nonselfadjoint operators in a Hilbert space and on the applications of this analysis to the control theory of linear distributed parameter systems. The operators, we consider, are the dynamics generators for systems governed by 3-dimensional wave equation which has spacially nonhomogeneous spherically symmetric coefficients and contains a first order damping term. We consider this equation with a one-parameter family of linear first order boundary conditions on a shere. These conditions contain a damping term as well. Our main object of interest is the class of operators in the energy space of 2-component initial data which generate the dynamics of the above systems. Our first main result is the fact that these operators are spectral in the sense of N. Dunford. This result is obtained as a corollary of two groups of results: (i) asymptotic representations for the complex eigenvalues and eigenfunctions, and (ii) the fact that the systems of eigenvectors and associated vectors form Riesz bases in the energy space. We also present an explicit solution of the controllability problem for the distributed parameter systems governed by the aforementioned equation using the spectral decomposition method.
机译:我们在希尔伯特空间中的一类非索卡交通员的频谱分析以及该分析对线性分布式参数系统的控制理论的应用中,制定了我们的结果。我们考虑的操作员是由三维波方程管辖的系统的动态发电机,其具有间隔非均匀球体对称系数并包含第一阶阻尼项。我们将此等式考虑在Shere上具有单参数系列的线性第一订单边界条件。这些条件也包含阻尼术语。我们的主要感兴趣对象是在2组件初始数据中的能量空间中的运营商类,它产生上述系统的动态。我们的第一主要结果是,这些运营商是N. Dunford意义上的光谱。该结果是作为两组结果的必然结果:(i)复杂特征值和特征障碍的渐近表示,(ii)特征向量和相关载体的系统在能量空间中形成Riesz基础的事实。我们还通过光谱分解方法向上述方程管理的分布式参数系统的可控性问题的显式解决方案。

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