Title :
TRUST-TECH-Based Expectation Maximization for Learning Finite Mixture Models
Author :
Reddy, Chandan K. ; Chiang, Hsiao-Dong ; Rajaratnam, Bala
Author_Institution :
Dept. of Comput. Sci., Wayne State Univ., Detroit, MI
fDate :
7/1/2008 12:00:00 AM
Abstract :
The expectation maximization (EM) algorithm is widely used for learning finite mixture models despite its greedy nature. Most popular model-based clustering techniques might yield poor clusters if the parameters are not initialized properly. To reduce the sensitivity of initial points, a novel algorithm for learning mixture models from multivariate data is introduced in this paper. The proposed algorithm takes advantage of TRUST-TECH (TRansformation Under STability-reTaining Equilibria CHaracterization) to compute neighborhood local maxima on the likelihood surface using stability regions. Basically, our method coalesces the advantages of the traditional EM with that of the dynamic and geometric characteristics of the stability regions of the corresponding nonlinear dynamical system of the log-likelihood function. Two phases, namely, the EM phase and the stability region phase, are repeated alternatively in the parameter space to achieve local maxima with improved likelihood values. The EM phase obtains the local maximum of the likelihood function and the stability region phase helps to escape out of the local maximum by moving toward the neighboring stability regions. Though applied to Gaussian mixtures in this paper, our technique can be easily generalized to any other parametric finite mixture model. The algorithm has been tested on both synthetic and real data sets and the improvements in the performance compared to other approaches are demonstrated. The robustness with respect to initialization is also illustrated experimentally.
Keywords :
Gaussian processes; learning (artificial intelligence); maximum likelihood estimation; nonlinear dynamical systems; optimisation; pattern clustering; Gaussian mixtures; TRUST-TECH-based expectation maximization; TRansformation Under STability-reTaining Equilibria CHaracterization; expectation maximization algorithm; finite mixture model learning; likelihood surface; log-likelihood function; model-based clustering; multivariate data; neighborhood local maxima; nonlinear dynamical system; parametric finite mixture model; stability region phase; dynamical systems; expectation maximization; finite mixture models; model-based clustering.; stability regions; unsupervised learning; Algorithms; Artificial Intelligence; Computer Simulation; Likelihood Functions; Models, Statistical; Pattern Recognition, Automated;
Journal_Title :
Pattern Analysis and Machine Intelligence, IEEE Transactions on
DOI :
10.1109/TPAMI.2007.70775