IJCAI 2022poster52 citations

Poisoning Deep Learning Based Recommender Model in Federated Learning Scenarios

Dazhong Rong, Qinming He, Jianhai Chen

Abstract

Various attack methods against recommender systems have been proposed in the past years, and the security issues of recommender systems have drawn considerable attention. Traditional attacks attempt to make target items recommended to as many users as possible by poisoning the training data. Benifiting from the feature of protecting users' private data, federated recommendation can effectively defend such attacks. Therefore, quite a few works have devoted themselves to developing federated recommender systems. For proving current federated recommendation is still vulnerable, in this work we probe to design attack approaches targeting deep learning based recommender models in federated learning scenarios. Specifically, our attacks generate poisoned gradients for manipulated malicious users to upload based on two strategies (i.e., random approximation and hard user mining). Extensive experiments show that our well-designed attacks can effectively poison the target models, and the attack effectiveness sets the state-of-the-art.

Data Mining: Recommender SystemsData Mining: Federated LearningMachine Learning: Adversarial Machine LearningData Mining: Collaborative Filtering
BibTeX
@inproceedings{ijcai2022p306,
  title     = {Poisoning Deep Learning Based Recommender Model in Federated Learning Scenarios},
  author    = {Rong, Dazhong and He, Qinming and Chen, Jianhai},
  booktitle = {Proceedings of the Thirty-First International Joint Conference on
               Artificial Intelligence, {IJCAI-22}},
  publisher = {International Joint Conferences on Artificial Intelligence Organization},
  editor    = {Lud De Raedt},
  pages     = {2204--2210},
  year      = {2022},
  month     = {7},
  note      = {Main Track},
  doi       = {10.24963/ijcai.2022/306},
  url       = {https://doi.org/10.24963/ijcai.2022/306},
}
Poisoning Deep Learning Based Recommender Model in Federated Learning Scenarios · IJCAI 2022