Difference between revisions of "IBM Model 2"
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One of the problems of the [[IBM Model 1]] is that it is very weak to reordering, since <math>p(f,a|s)</math> is calculated using only the lexical translation probabilities <math>tr(t|s)</math>. Because of this, if the model is presented with 2 translations candidates <math>t_1</math> and <math>t_2</math> with the same lexical translations, but with different reordering of the translated words, the model scores both translations with the same score. | One of the problems of the [[IBM Model 1]] is that it is very weak to reordering, since <math>p(f,a|s)</math> is calculated using only the lexical translation probabilities <math>tr(t|s)</math>. Because of this, if the model is presented with 2 translations candidates <math>t_1</math> and <math>t_2</math> with the same lexical translations, but with different reordering of the translated words, the model scores both translations with the same score. | ||
Revision as of 09:22, 27 September 2011
Model
One of the problems of the IBM Model 1 is that it is very weak to reordering, since is calculated using only the lexical translation probabilities . Because of this, if the model is presented with 2 translations candidates and with the same lexical translations, but with different reordering of the translated words, the model scores both translations with the same score.
Mixture-based Alignment models~(IBM Model 2) addresses this problem by modeling the absolute distortion in the word positioning between the 2 languages, introducing an alignment probability distribution , where and are the word positions in the source and target sentences. Thus the equation for becomes:
Where the alignment probability distribution models the probability of a word in the position in the source sentence of being reordered into the position in the target sentence.