从与调和平均值相关的非线性矩阵方程得出新的多变量平均值

IF 0.5 Q3 MATHEMATICS ACTA SCIENTIARUM MATHEMATICARUM Pub Date : 2024-04-29 DOI:10.1007/s44146-024-00132-y
Vatsalkumar N. Mer, Sejong Kim
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引用次数: 0

摘要

对于正定矩阵,已经定义了各种多变量均值,如Cartan均值、Wasserstein均值和rsamunyi幂均值。这些多变量均值有相应的矩阵方程。本文考虑以下非线性矩阵方程:$$\begin{aligned} X = \left[ \sum _{i=1}^{n} w_{i} [ (1-t) X + t A_{i} ]^{-1} \right] ^{-1}, \end{aligned}$$其中\(t \in (0,1]\)。我们证明了这个方程有一个唯一解,并定义了一个新均值,记为\(G_{t}(\omega ; \mathbb {A})\)。我们探索了均值\(G_{t}(\omega ; \mathbb {A})\)的重要性质,包括与矩阵幂均值的关系,并表明均值\(G_{t}(\omega ; \mathbb {A})\)在参数t中是单调的。最后,我们将均值\(G_{t}(\omega ; \mathbb {A})\)与对数行列式散度的重心连接起来。
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New multivariable mean from nonlinear matrix equation associated to the harmonic mean

Various multivariable means have been defined for positive definite matrices, such as the Cartan mean, Wasserstein mean, and Rényi power mean. These multivariable means have corresponding matrix equations. In this paper, we consider the following non-linear matrix equation:

$$\begin{aligned} X = \left[ \sum _{i=1}^{n} w_{i} [ (1-t) X + t A_{i} ]^{-1} \right] ^{-1}, \end{aligned}$$

where \(t \in (0,1]\). We prove that this equation has a unique solution and define a new mean, which we denote as \(G_{t}(\omega ; \mathbb {A})\). We explore important properties of the mean \(G_{t}(\omega ; \mathbb {A})\) including the relationship with matrix power mean, and show that the mean \(G_{t}(\omega ; \mathbb {A})\) is monotone in the parameter t. Finally, we connect the mean \(G_{t}(\omega ; \mathbb {A})\) to a barycenter for the log-determinant divergence.

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