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Learning Fashion Compatibility with Bidirectional LSTMs

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arxiv 1707.05691 v1 pith:A3HDRC7A submitted 2017-07-18 cs.CV

classification cs.CV
keywords fashionoutfitcompatibilityitemitemslearnbidirectionalgiven
verification ladder T0 review T1 audit T2 compute T3 formal
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The ubiquity of online fashion shopping demands effective recommendation services for customers. In this paper, we study two types of fashion recommendation: (i) suggesting an item that matches existing components in a set to form a stylish outfit (a collection of fashion items), and (ii) generating an outfit with multimodal (images/text) specifications from a user. To this end, we propose to jointly learn a visual-semantic embedding and the compatibility relationships among fashion items in an end-to-end fashion. More specifically, we consider a fashion outfit to be a sequence (usually from top to bottom and then accessories) and each item in the outfit as a time step. Given the fashion items in an outfit, we train a bidirectional LSTM (Bi-LSTM) model to sequentially predict the next item conditioned on previous ones to learn their compatibility relationships. Further, we learn a visual-semantic space by regressing image features to their semantic representations aiming to inject attribute and category information as a regularization for training the LSTM. The trained network can not only perform the aforementioned recommendations effectively but also predict the compatibility of a given outfit. We conduct extensive experiments on our newly collected Polyvore dataset, and the results provide strong qualitative and quantitative evidence that our framework outperforms alternative methods.

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  1. How big can style be? Addressing high dimensionality for recommending with style

    cs.IR 2019-08 conditional novelty 4.0 of 10

    VGG19 Gram-matrix style embeddings for fashion products can be compressed to 512 dimensions with minimal loss in agreement with the full-embedding recommendations.

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