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A Non-Linear Structural Probe

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arxiv 2105.10185 v1 pith:WFFAQNVE submitted 2021-05-21 cs.CL cs.LG

classification cs.CLcs.LG
keywords probestructuralstructuresyntacticcontextualencodedencodinginvestigate
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Probes are models devised to investigate the encoding of knowledge -- e.g. syntactic structure -- in contextual representations. Probes are often designed for simplicity, which has led to restrictions on probe design that may not allow for the full exploitation of the structure of encoded information; one such restriction is linearity. We examine the case of a structural probe (Hewitt and Manning, 2019), which aims to investigate the encoding of syntactic structure in contextual representations through learning only linear transformations. By observing that the structural probe learns a metric, we are able to kernelize it and develop a novel non-linear variant with an identical number of parameters. We test on 6 languages and find that the radial-basis function (RBF) kernel, in conjunction with regularization, achieves a statistically significant improvement over the baseline in all languages -- implying that at least part of the syntactic knowledge is encoded non-linearly. We conclude by discussing how the RBF kernel resembles BERT's self-attention layers and speculate that this resemblance leads to the RBF-based probe's stronger performance.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Probe-Me-Not: Protecting Pre-trained Encoders from Malicious Probing

    cs.CR 2024-11 conditional novelty 6.0 of 10

    EncoderLock modifies a small set of pre-trained encoder weights so that linear probing succeeds on authorized domains while failing on prohibited domains, in supervised, unsupervised, and zero-shot data scenarios.

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