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FedAdOb: Privacy-Preserving Federated Deep Learning with Adaptive Obfuscation
Summary
Federated learning (FL) privacy is enhanced by FedAdOb, an adaptive obfuscation method. This approach protects private data without sacrificing model performance in collaborative machine learning.
Area of Science:
- Machine Learning
- Data Privacy
- Cybersecurity
Background:
- Federated learning (FL) enables collaborative model training without data sharing, but privacy leakage remains a concern.
- Existing defense mechanisms often compromise model performance due to fixed data or gradient obfuscation.
- Attacks on FL privacy have spurred research into robust defending strategies.
Purpose of the Study:
- To propose FedAdOb, a novel adaptive obfuscation mechanism for enhanced data privacy in federated learning.
- To protect private features and labels without degrading original model performance.
- To ensure privacy preservation in both horizontal and vertical federated learning scenarios.
Main Methods:
- Introduction of FedAdOb, a passport-based adaptive obfuscation technique.
- Theoretical validation of FedAdOb's privacy-preserving capabilities for features and labels (Theorems 1 and 2).
- Extensive experimental evaluations on diverse datasets and network architectures.
Main Results:
- FedAdOb effectively protects private data in federated learning settings.
- The proposed mechanism achieves a superior trade-off between privacy preservation and model performance.
- Experimental results demonstrate FedAdOb's superiority over existing privacy-preserving methods.
Conclusions:
- FedAdOb offers a robust solution for privacy-preserving federated learning.
- The adaptive obfuscation strategy maintains high model performance while ensuring data confidentiality.
- FedAdOb represents a significant advancement in securing collaborative machine learning.
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