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Federated Learning over Wireless Fading Channels

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arxiv 1907.09769 v2 pith:6T4SK6KT submitted 2019-07-23 cs.IT cs.DCcs.LGmath.IT

classification cs.ITcs.DCcs.LGmath.IT
keywords wirelessdevicesschemeanalogchanneldsgdlearningca-dsgd
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We study federated machine learning at the wireless network edge, where limited power wireless devices, each with its own dataset, build a joint model with the help of a remote parameter server (PS). We consider a bandwidth-limited fading multiple access channel (MAC) from the wireless devices to the PS, and propose various techniques to implement distributed stochastic gradient descent (DSGD). We first propose a digital DSGD (D-DSGD) scheme, in which one device is selected opportunistically for transmission at each iteration based on the channel conditions; the scheduled device quantizes its gradient estimate to a finite number of bits imposed by the channel condition, and transmits these bits to the PS in a reliable manner. Next, motivated by the additive nature of the wireless MAC, we propose a novel analog communication scheme, referred to as the compressed analog DSGD (CA-DSGD), where the devices first sparsify their gradient estimates while accumulating error, and project the resultant sparse vector into a low-dimensional vector for bandwidth reduction. Numerical results show that D-DSGD outperforms other digital approaches in the literature; however, in general the proposed CA-DSGD algorithm converges faster than the D-DSGD scheme and other schemes in the literature, and reaches a higher level of accuracy. We have observed that the gap between the analog and digital schemes increases when the datasets of devices are not independent and identically distributed (i.i.d.). Furthermore, the performance of the CA-DSGD scheme is shown to be robust against imperfect channel state information (CSI) at the devices. Overall these results show clear advantages for the proposed analog over-the-air DSGD scheme, which suggests that learning and communication algorithms should be designed jointly to achieve the best end-to-end performance in machine learning applications at the wireless edge.

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  1. On Analog Gradient Descent Learning over Multiple Access Fading Channels

    cs.LG 2019-08 conditional novelty 6.0 of 10

    The GBMA algorithm lets distributed nodes transmit analog gradients over a fading multiple access channel without power control, and provably approaches centralized gradient descent convergence as the number of nodes grows.

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