Long Short-Term Memory as a Dynamically Computed Element-wise Weighted Sum

May 09, 2018 ยท Declared Dead ยท ๐Ÿ› Annual Meeting of the Association for Computational Linguistics

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Authors Omer Levy, Kenton Lee, Nicholas FitzGerald, Luke Zettlemoyer arXiv ID 1805.03716 Category cs.CL: Computation & Language Cross-listed cs.AI, cs.LG, stat.ML Citations 36 Venue Annual Meeting of the Association for Computational Linguistics Last Checked 6 months ago
Abstract
LSTMs were introduced to combat vanishing gradients in simple RNNs by augmenting them with gated additive recurrent connections. We present an alternative view to explain the success of LSTMs: the gates themselves are versatile recurrent models that provide more representational power than previously appreciated. We do this by decoupling the LSTM's gates from the embedded simple RNN, producing a new class of RNNs where the recurrence computes an element-wise weighted sum of context-independent functions of the input. Ablations on a range of problems demonstrate that the gating mechanism alone performs as well as an LSTM in most settings, strongly suggesting that the gates are doing much more in practice than just alleviating vanishing gradients.
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