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Thesis: Document Summarization with applications to Keyword extraction and Image Retrieval

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arxiv 2406.00013 v1 pith:77Q42JPK submitted 2024-05-20 cs.IR cs.AIcs.CLcs.LG

classification cs.IRcs.AIcs.CLcs.LG
keywords sentimentdocumentsummarizationtextsummaryfunctionsgenerategood
verification ladder T0 review T1 audit T2 compute T3 formal
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Automatic summarization is the process of reducing a text document in order to generate a summary that retains the most important points of the original document. In this work, we study two problems - i) summarizing a text document as set of keywords/caption, for image recommedation, ii) generating opinion summary which good mix of relevancy and sentiment with the text document. Intially, we present our work on an recommending images for enhancing a substantial amount of existing plain text news articles. We use probabilistic models and word similarity heuristics to generate captions and extract Key-phrases which are re-ranked using a rank aggregation framework with relevance feedback mechanism. We show that such rank aggregation and relevant feedback which are typically used in Tagging Documents, Text Information Retrieval also helps in improving image retrieval. These queries are fed to the Yahoo Search Engine to obtain relevant images 1. Our proposed method is observed to perform better than all existing baselines. Additonally, We propose a set of submodular functions for opinion summarization. Opinion summarization has built in it the tasks of summarization and sentiment detection. However, it is not easy to detect sentiment and simultaneously extract summary. The two tasks conflict in the sense that the demand of compression may drop sentiment bearing sentences, and the demand of sentiment detection may bring in redundant sentences. However, using submodularity we show how to strike a balance between the two requirements. Our functions generate summaries such that there is good correlation between document sentiment and summary sentiment along with good ROUGE score. We also compare the performances of the proposed submodular functions.

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  1. Automated LaTeX Code Generation from Handwritten Math Expressions Using Vision Transformer

    cs.CV 2024-12 reject novelty 3.0 of 10

    A vision transformer encoder with a transformer decoder beats small CNN-LSTM and ResNet-LSTM baselines on image-to-LaTeX conversion in the authors' reported experiments.

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