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An Empirical Exploration of Skip Connections for Sequential Tagging

机译:顺序标记跳过连接的实证探索

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In this paper, we empirically explore the effects of various kinds of skip connections in stacked bidirectional LSTMs for sequential tagging. We investigate three kinds of skip connections connecting to LSTM cells: (a) skip connections to the gates, (b) skip connections to the internal states and (c) skip connections to the cell outputs. We present comprehensive experiments showing that skip connections to cell outputs outperform the remaining two. Furthermore, we observe that using gated identity functions as skip mappings works pretty well. Based on this novel skip connections, we successfully train deep stacked bidirectional LSTM models and obtain state-of-the-art results on CCG supertagging and comparable results on POS tagging.
机译:在本文中,我们经验探讨了各种跳过连接在堆叠双向LSTM中的效果进行顺序标记。我们调查连接到LSTM单元的三种跳过连接:(a)跳过与门的连接,(b)跳过与内部状态的连接和(c)跳过与单元格输出的连接。我们展示了综合实验,表明与细胞输出的跳过连接优于剩余的两个。此外,我们观察到,使用所属的身份函数作为跳过映射工作得很好。基于这一新颖的跳过连接,我们成功培训了深度堆叠的双向LSTM模型,并在POS标记上获得了CCG超牌和可比结果的最先进的结果。

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