In the ever-evolving digital audio landscape, Spotify, well-known for its music and talk content, has recently introduced audiobooks to its vast user base. While promising, this move presents significant challenges for personalized recommendations. Unlike music and podcasts, audiobooks, initially available for a fee, cannot be easily skimmed before purchase, posing higher stakes for the relevance of recommendations. Furthermore, introducing a new content type into an existing platform confronts extreme data sparsity, as most users are unfamiliar with this new content type. Lastly, recommending content to millions of users requires the model to react fast and be scalable. To address these challenges, we leverage podcast and music user preferences and introduce 2T-HGNN, a scalable recommendation system comprising Heterogeneous Graph Neural Networks (HGNNs) and a Two Tower (2T) model. This novel approach uncovers nuanced item relationships while ensuring low latency and complexity. We decouple users from the HGNN graph and propose an innovative multi-link neighbor sampler. These choices, together with the 2T component, significantly reduce the complexity of the HGNN model. Empirical evaluations involving millions of users show significant improvement in the quality of personalized recommendations, resulting in a +46% increase in new audiobooks start rate and a +23% boost in streaming rates. Intriguingly, our model's impact extends beyond audiobooks, benefiting established products like podcasts.

Personalized Audiobook Recommendations at Spotify Through Graph Neural Networks / De Nadai, M., Fabbri, F., Gigioli, P., Wang, A., Li, A., Silvestri, F., Kim, L., Lin, S., Radosavljevic, V., Ghael, S., Nyhan, D., Bouchard, H., Lalmas, M., Damianou, A.. - (2024), pp. 403-412. (33rd Companion of the ACM World Wide Web Conference, WWW 2023 Singapore ) [10.1145/3589335.3648339].

Personalized Audiobook Recommendations at Spotify Through Graph Neural Networks

Ang Li;Fabrizio Silvestri
;
2024

Abstract

In the ever-evolving digital audio landscape, Spotify, well-known for its music and talk content, has recently introduced audiobooks to its vast user base. While promising, this move presents significant challenges for personalized recommendations. Unlike music and podcasts, audiobooks, initially available for a fee, cannot be easily skimmed before purchase, posing higher stakes for the relevance of recommendations. Furthermore, introducing a new content type into an existing platform confronts extreme data sparsity, as most users are unfamiliar with this new content type. Lastly, recommending content to millions of users requires the model to react fast and be scalable. To address these challenges, we leverage podcast and music user preferences and introduce 2T-HGNN, a scalable recommendation system comprising Heterogeneous Graph Neural Networks (HGNNs) and a Two Tower (2T) model. This novel approach uncovers nuanced item relationships while ensuring low latency and complexity. We decouple users from the HGNN graph and propose an innovative multi-link neighbor sampler. These choices, together with the 2T component, significantly reduce the complexity of the HGNN model. Empirical evaluations involving millions of users show significant improvement in the quality of personalized recommendations, resulting in a +46% increase in new audiobooks start rate and a +23% boost in streaming rates. Intriguingly, our model's impact extends beyond audiobooks, benefiting established products like podcasts.
2024
33rd Companion of the ACM World Wide Web Conference, WWW 2023
audiobooks; graph neural networks; personalization; recommender systems
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
Personalized Audiobook Recommendations at Spotify Through Graph Neural Networks / De Nadai, M., Fabbri, F., Gigioli, P., Wang, A., Li, A., Silvestri, F., Kim, L., Lin, S., Radosavljevic, V., Ghael, S., Nyhan, D., Bouchard, H., Lalmas, M., Damianou, A.. - (2024), pp. 403-412. (33rd Companion of the ACM World Wide Web Conference, WWW 2023 Singapore ) [10.1145/3589335.3648339].
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Note: https://dl.acm.org/doi/10.1145/3589335.3648339
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1775776
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