Gaussian Orthogonal Latent Factor Processes for Large Incomplete Matrices of Correlated Data*

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Abstract

We introduce Gaussian orthogonal latent factor processes for modeling and predicting large correlated data. To handle the computational challenge, we first decompose the likelihood function of the Gaussian random field with a multi-dimensional input domain into a product of densities at the orthogonal components with lower-dimensional inputs. The continuous-time Kalman filter is implemented to compute the likelihood function efficiently without making approximations. We also show that the posterior distribution of the factor processes is independent, as a consequence of prior independence of factor processes and orthogonal factor loading matrix. For studies with large sample sizes, we propose a flexible way to model the mean, and we derive the marginal posterior distribution to solve identifiability issues in sampling these parameters. Both simulated and real data applications confirm the outstanding performance of this method.

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APA

Gu, M., & Li, H. (2022). Gaussian Orthogonal Latent Factor Processes for Large Incomplete Matrices of Correlated Data*. Bayesian Analysis, 17(4), 1219–1244. https://doi.org/10.1214/21-BA1295

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