FedStar: Efficient Federated Learning On Heterogeneous Communication Networks

计算机科学 异步通信 分布式计算 延迟(音频) 架空(工程) 加速 趋同(经济学) 对称多处理机系统 异构网络 低延迟(资本市场) 计算机网络 无线 无线网络 并行计算 电信 经济 经济增长 操作系统
作者
Jing Cao,Ran Wei,Qianyue Cao,Yongchun Zheng,Zongwei Zhu,Cheng Ji,Xuehai Zhou
出处
期刊:IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems [Institute of Electrical and Electronics Engineers]
卷期号:43 (6): 1848-1861 被引量:3
标识
DOI:10.1109/tcad.2023.3346274
摘要

The proliferation of multi-media applications and increased computing power of mobile devices have led to the development of personalized artificial intelligent (AI) applications that utilize the massive user-information residing on them. However, the traditional centralized training paradigm is not applicable in this scenario due to potential privacy risks and high communication overhead. Federated learning (FL) provides an option to these applications. Nevertheless, the heterogeneity of computing and communication latency among devices have posed great challenges to building efficient learning frameworks. Existing optimizations on FL either fail to speed up training on heterogeneous devices or suffer from poor communication efficiency. In this paper, we propose FedStar, an efficient FL framework that supports decentralized asynchronous training on heterogeneous communication networks. Considering the heterogeneous computing power in the network, FedStar supports running heterogeneity-aware local steps on each device. What's more, considering the heterogeneous communication latency and possibly unreachable communication path between some devices, FedStar generates a decentralized communication topology that can achieve maximal training throughput. Finally, it adopts weighted aggregation to guarantee high convergence accuracy of global model. Theoretical analysis results show the convergence behaviour of FedStar under non-convex settings. Experimental results show that FedStar can achieve a speedup of 4.81× than the state-of-the-art FL schemes with high convergence accuracy.

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