Papers › Learning with Holographic Reduced Representations

Learning with Holographic Reduced Representations

5 Sep 2021NeurIPS 2021 12arXiv:2109.02157archive 2025-07-28

Ashwinkumar Ganesan, Hang Gao, Sunil Gandhi, Edward Raff, Tim Oates, James Holt, Mark McLean

Holographic Reduced Representations (HRR) are a method for performing symbolic AI on top of real-valued vectors by associating each vector with an abstract concept, and providing mathematical operations to manipulate vectors as if they were classic symbolic objects. This method has seen little use outside of older symbolic AI work and cognitive science. Our goal is to revisit this approach to understand if it is viable for enabling a hybrid neural-symbolic approach to learning as a differentiable component of a deep learning architecture. HRRs today are not effective in a differentiable solution due to numerical instability, a problem we solve by introducing a projection step that forces the vectors to exist in a well behaved point in space. In doing so we improve the concept retrieval efficacy of HRRs by over 100×. Using multi-label classification we demonstrate how to leverage the symbolic HRR properties to develop an output layer and loss function that is able to learn effectively, and allows us to investigate some of the pros and cons of an HRR neuro-symbolic learning approach. Our code can be found at https://github.com/NeuromorphicComputationResearchProgram/Learning-with-Holographic-Reduced-Representations

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baseline_test NeuromorphicComputationResearchProgram/Learning-with-Holographic-Reduced-Representations/lib/model.py official repository unverified MIT (permissive) · d2bfb4dfdeec9aee · report
baseline_train NeuromorphicComputationResearchProgram/Learning-with-Holographic-Reduced-Representations/lib/model.py official repository unverified MIT (permissive) · 528eac8c11f5eb28 · report
circular_conv NeuromorphicComputationResearchProgram/Learning-with-Holographic-Reduced-Representations/lib/mathops.py official repository unverified MIT (permissive) · 9f884a4269a73b4e · report
complex_division NeuromorphicComputationResearchProgram/Learning-with-Holographic-Reduced-Representations/lib/mathops.py official repository unverified MIT (permissive) · 5c9ad0b9818d84e5 · report
complex_multiplication NeuromorphicComputationResearchProgram/Learning-with-Holographic-Reduced-Representations/lib/mathops.py official repository unverified MIT (permissive) · a01531e7c5e28798 · report
gen_rand_vec NeuromorphicComputationResearchProgram/Learning-with-Holographic-Reduced-Representations/lib/embeddings.py official repository unverified MIT (permissive) · 6cac5107499ce4f4 · report
generate_vectors NeuromorphicComputationResearchProgram/Learning-with-Holographic-Reduced-Representations/lib/embeddings.py official repository unverified MIT (permissive) · 35040e193c018346 · report
mbprecision NeuromorphicComputationResearchProgram/Learning-with-Holographic-Reduced-Representations/lib/metrics.py official repository unverified MIT (permissive) · 6470efd911336ea8 · report
mbrecall NeuromorphicComputationResearchProgram/Learning-with-Holographic-Reduced-Representations/lib/metrics.py official repository unverified MIT (permissive) · ffdd5ec12ec03c09 · report
reduce_dimensions NeuromorphicComputationResearchProgram/Learning-with-Holographic-Reduced-Representations/build_label_vectors.py official repository unverified MIT (permissive) · 79f411e19bb4fac3 · report
spp_loss NeuromorphicComputationResearchProgram/Learning-with-Holographic-Reduced-Representations/lib/model.py official repository unverified MIT (permissive) · 364b63d35d4fd454 · report

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