This repository is the official Pytorch implementation DEMO of FedCache: A Knowledge Cache-driven Federated Learning Architecture for Personalized Edge Intelligence. IEEE Transactions on Mobile Computing (TMC). 2024
TMC 2024 Top 15 Popular Paper (Out of 984)
(as of Sep. 2024 in IEEE Xplore)
- FedCache is a device friendly, scalable and effective personalized federated learning architecture tailored for edge computing.
- FedCache guarantees satisfactory performance while conforming to multiple personalized devices-side limitations.
- FedCache improves communication efficiency by up to x200 over previous architectures and can accommodate heterogeneous devices and asynchronous interactions among devices and the server.
- Foundation Works: FedICT, FedDKC, MTFL, DS-FL, FD
- Derivative Works:
- Poisoning Attack: FDLA, PCFDLA, FDSA
- Generalization Performance: HKS
- Personalization Performance: FedCache 2.0, HKS
- Privacy Preservation: HKS, SVAFD
- Application Scenario: FedCache 2.0, FDVEC
- Communication Efficiency: SCARLET, ALU
- Data Incrementation: FedCTR (Submitted)
- FedCache+LLM: TBD
- FedCache+Topology Organization: TBD
If you have any ideas or questions regarding to FedCache, please feel free to contact wuzhiyuan22s@ict.ac.cn.
- Python: 3.10
- Pytorch: 1.13.1
- torchvision: 0.14.1
- hnswlib
- Other dependencies
python main_fedcache.py
Noting that Pytorch Dataloader in this FedCache implementation should be set as:
torch.utils.data.DataLoader(dataset=train_dataset, batch_size=train_batch_size, shuffle=False, drop_last=True)
| Method | MAUA (%) | Communication Cost (G) | Speed-up Ratio |
|---|---|---|---|
| pFedMe | 94.89 | 13.25 | ×1.0 |
| MTFL | 95.59 | 7.77 | ×1.7 |
| FedDKC | 89.62 | 9.13 | ×1.5 |
| FedICT | 84.62 | - | - |
| FD | 84.19 | - | - |
| FedCache | 87.77 | 0.99 | ×13.4 |
| Method | MAUA (%) | Communication Cost (G) | Speed-up Ratio |
|---|---|---|---|
| pFedMe | 81.57 | 20.71 | ×1.0 |
| MTFL | 83.92 | 12.33 | ×1.7 |
| FedDKC | 78.24 | 8.43 | ×2.5 |
| FedICT | 76.90 | 13.34 | ×1.6 |
| FD | 76.32 | - | - |
| FedCache | 77.71 | 0.08 | ×258.9 |
| Method | MAUA (%) | Communication Cost (G) | Speed-up Ratio |
|---|---|---|---|
| pFedMe | 37.49 | - | - |
| MTFL | 43.43 | 52.99 | ×1.0 |
| FedDKC | 45.87 | 11.46 | ×4.6 |
| FedICT | 43.61 | 10.69 | ×5.0 |
| FD | 42.77 | - | - |
| FedCache | 44.42 | 0.19 | ×278.9 |
| Method | MAUA (%) | Communication Cost (G) | Speed-up Ratio |
|---|---|---|---|
| pFedMe | 31.65 | - | - |
| MTFL | 34.09 | - | - |
| FedDKC | 43.95 | 4.12 | ×1.3 |
| FedICT | 42.79 | 5.50 | ×1.0 |
| FD | 39.36 | - | - |
| FedCache | 40.45 | 0.07 | ×78.6 |
| Method | MAUA (%) | Communication Cost (G) | Speed-up Ratio |
|---|---|---|---|
| FedDKC | 85.38 | 10.53 | ×1.0 |
| FedICT | 80.53 | - | - |
| FD | 79.90 | - | - |
| FedCache | 83.94 | 0.10 | ×105.3 |
| Method | MAUA (%) | Communication Cost (G) | Speed-up Ratio |
|---|---|---|---|
| FedDKC | 77.96 | 12.64 | ×1.0 |
| FedICT | 76.11 | - | - |
| FD | 75.57 | - | - |
| FedCache | 77.26 | 0.08 | ×158.0 |
| Method | MAUA (%) | Communication Cost (G) | Speed-up Ratio |
|---|---|---|---|
| FedDKC | 44.53 | 4.58 | ×1.2 |
| FedICT | 43.96 | 5.35 | ×1.0 |
| FD | 40.40 | - | - |
| FedCache | 41.59 | 0.05 | ×107.0 |
| Method | MAUA (%) | Communication Cost (G) | Speed-up Ratio |
|---|---|---|---|
| FedDKC | 44.80 | 4.12 | ×1.3 |
| FedICT | 43.40 | 5.50 | ×1.0 |
| FD | 40.76 | - | - |
| FedCache | 41.71 | 0.07 | ×78.6 |
@ARTICLE{wu2024fedcache,
author={Wu, Zhiyuan and Sun, Sheng and Wang, Yuwei and Liu, Min and Xu, Ke and Wang, Wen and Jiang, Xuefeng and Gao, Bo and Lu, Jinda},
journal={IEEE Transactions on Mobile Computing},
title={FedCache: A Knowledge Cache-Driven Federated Learning Architecture for Personalized Edge Intelligence},
year={2024},
volume={},
number={},
pages={1-15},
keywords={Computer architecture;Training;Servers;Computational modeling;Data models;Adaptation models;Performance evaluation;Communication efficiency;distributed architecture;edge computing;knowledge distillation;personalized federated learning},
doi={10.1109/TMC.2024.3361876}
}FedICT: Federated Multi-task Distillation for Multi-access Edge Computing. IEEE Transactions on Parallel and Distributed Systems (TPDS). 2024
Agglomerative Federated Learning: Empowering Larger Model Training via End-Edge-Cloud Collaboration. IEEE International Conference on Computer Communications (INFOCOM). 2024
Exploring the Distributed Knowledge Congruence in Proxy-data-free Federated Distillation. ACM Transactions on Intelligent Systems and Technology (TIST). 2024.