FedOpt: Towards Communication Efficiency and Privacy Preservation in Federated Learning

被引:109
|
作者
Asad, Muhammad [1 ,2 ]
Moustafa, Ahmed [1 ,3 ]
Ito, Takayuki [1 ,2 ]
机构
[1] Nagoya Inst Technol, Dept Comp Sci, Nagoya, Aichi 4668555, Japan
[2] Nagoya Inst Technol NITech Frontier Inst, Nagoya, Aichi 4668555, Japan
[3] Zagazig Univ, Fac Informat, Zagazig 44519, Egypt
来源
APPLIED SCIENCES-BASEL | 2020年 / 10卷 / 08期
关键词
Federated Learning; Artificial Intelligence; privacy preserving; communication efficiency;
D O I
10.3390/app10082864
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Artificial Intelligence (AI) has been applied to solve various challenges of real-world problems in recent years. However, the emergence of new AI technologies has brought several problems, especially with regard to communication efficiency, security threats and privacy violations. Towards this end, Federated Learning (FL) has received widespread attention due to its ability to facilitate the collaborative training of local learning models without compromising the privacy of data. However, recent studies have shown that FL still consumes considerable amounts of communication resources. These communication resources are vital for updating the learning models. In addition, the privacy of data could still be compromised once sharing the parameters of the local learning models in order to update the global model. Towards this end, we propose a new approach, namely, Federated Optimisation (FedOpt) in order to promote communication efficiency and privacy preservation in FL. In order to implement FedOpt, we design a novel compression algorithm, namely, Sparse Compression Algorithm (SCA) for efficient communication, and then integrate the additively homomorphic encryption with differential privacy to prevent data from being leaked. Thus, the proposed FedOpt smoothly trade-offs communication efficiency and privacy preservation in order to adopt the learning task. The experimental results demonstrate that FedOpt outperforms the state-of-the-art FL approaches. In particular, we consider three different evaluation criteria; model accuracy, communication efficiency and computation overhead. Then, we compare the proposed FedOpt with the baseline configurations and the state-of-the-art approaches, i.e., Federated Averaging (FedAvg) and the paillier-encryption based privacy-preserving deep learning (PPDL) on all these three evaluation criteria. The experimental results show that FedOpt is able to converge within fewer training epochs and a smaller privacy budget.
引用
收藏
页数:17
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