Papers › Evaluating the Search Phase of Neural Architecture Search

Evaluating the Search Phase of Neural Architecture Search

21 Feb 2019ICLR 2020 1arXiv:1902.08142archive 2025-07-28

Kaicheng Yu, Christian Sciuto, Martin Jaggi, Claudiu Musat, Mathieu Salzmann

Neural Architecture Search (NAS) aims to facilitate the design of deep networks for new tasks. Existing techniques rely on two stages: searching over the architecture space and validating the best architecture. NAS algorithms are currently compared solely based on their results on the downstream task. While intuitive, this fails to explicitly evaluate the effectiveness of their search strategies. In this paper, we propose to evaluate the NAS search phase. To this end, we compare the quality of the solutions obtained by NAS search policies with that of random architecture selection. We find that: (i) On average, the state-of-the-art NAS algorithms perform similarly to the random policy; (ii) the widely-used weight sharing strategy degrades the ranking of the NAS candidates to the point of not reflecting their true performance, thus reducing the effectiveness of the search process. We believe that our evaluation framework will be key to designing NAS strategies that consistently discover architectures superior to random ones.

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compute_vertex_channels kcyu2014/eval-nas/search_policies/cnn/search_space/nas_bench/model_builder.py official repository unverified MIT (permissive) · f9871f3eff7eacf0 · report
get_batch_v03 kcyu2014/eval-nas/utils.py official repository unverified MIT (permissive) · 561d0a2fe4de4303 · report
get_batch_vlatest kcyu2014/eval-nas/utils.py official repository unverified MIT (permissive) · 1d811d2e167d5659 · report
get_forced_genotype_by_name kcyu2014/eval-nas/genotypes.py official repository unverified MIT (permissive) · 9ed8d82eda8d5e2d · report
to_item_v03 kcyu2014/eval-nas/utils.py official repository unverified MIT (permissive) · 09a3c12dc29e6097 · report

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Neural Architecture Search

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