HyperNP: Interactive Visual Exploration of Multidimensional Projection Hyperparameters

Publication date

2022-06

Authors

Appleby, Gabriel
Espadoto, Mateus
Chen, Ron
Goree, Samuel
Telea, AlexandruORCID 0000-0003-0750-0502ISNI 0000000041071164
Anderson, Eduard
Chang, Remco

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Document Type

Article
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taverne

Abstract

Projection algorithms such as t-SNE or UMAP are useful for the visualization of high dimensional data, but depend on hyperparameters which must be tuned carefully. Unfortunately, iteratively recomputing projections to find the optimal hyperparameter values is computationally intensive and unintuitive due to the stochastic nature of such methods. In this paper we propose HyperNP, a scalable method that allows for real-time interactive hyperparameter exploration of projection methods by training neural network approximations. A HyperNP model can be trained on a fraction of the total data instances and hyperparameter configurations that one would like to investigate and can compute projections for new data and hyperparameters at interactive speeds. HyperNP models are compact in size and fast to compute, thus allowing them to be embedded in lightweight visualization systems. We evaluate the performance of HyperNP across three datasets in terms of performance and speed. The results suggest that HyperNP models are accurate, scalable, interactive, and appropriate for use in real-world settings.

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Citation

Appleby, G, Espadoto, M, Chen, R, Goree, S, Telea, A, Anderson, E & Chang, R 2022, 'HyperNP: Interactive Visual Exploration of Multidimensional Projection Hyperparameters', Computer Graphics Forum, vol. 41, no. 3, pp. 169-181. https://doi.org/10.1111/cgf.14531