arrow
Return

Exploiting Wireless Technology for Energy-Efficient Accelerators With Multiple Dataflows and Precision

delete2022-07-01
delete3
delete
OA
AI
S
Siqin Liu
T
Talha Furkan Canan
S
Soumyasanta Laha
S
Savaş Kaya
A
Avinash Karanth *
DOI:10.1109/TCSI.2022.3166752delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
As model size and the number of layers increase, Deep Neural Networks (DNNs) demand enormous computational power and throughput to meet exceedingly high prediction accuracy's of today's machine learning (ML) applications. Spatial hardware accelerators have been proposed that optimize the dataflow and exploit sparsity to provide a significant decrease in power consumption. As spatial architectures are traditionally designed with metallic interconnects, significant power is expended for data movement for different dataflows. In this paper, we exploit extended wireless technology to design a power-efficient and high-throughput DNN accelerator, e-WiNN, that can be configured for all representative dataflows and arithmetic precisions. We leverage novel circuit design by utilizing Dadda-algorithm based Multiply-and-Accumulate (MAC) circuits for 4-bit, 8-bit and 16-bit inputs to reduce area, power and delay constraints in 14 nm predictive technology. Our novel wireless transmitter integrates on-off keying (OOK) modulator with power amplifier that results in significant energy savings. To reduce the area overhead, we cluster wireless transceivers into groups of four such that both weights and input features can be effectively multicast to reduce the data movement. The energy efficient transceiver circuit is implemented in state-of-the-art BSIM 32 nm FinFET technology model and our link budget considers required RF power for different frequencies and inter-PE distance at three different antenna directivities including isotropic. Our detailed RTL modeling and cycle-accurate simulation results show that e-WiNN achieves 36.3% latency reduction and 76.1% energy saving when compared to state-of-art wire interconnected accelerators; 70.3% area reduction and 41.6% energy saving at the cost of 11% latency increase when compared to prior wireless accelerators on various neural networks (AlexNet, VGG16, and ResNet-9/50).
Keywords:
Wireless communication
Transceivers
Integrated circuit interconnections
Hardware acceleration
Costs
Throughput
Multicast communication
Wireless technology
transceiver design
dataflows
precision

Journal

IEEE Transactions on Circuits and Systems I-Regular Papers cover
IEEE Transactions on Circuits and Systems I-Regular Papers
IF:
5.2
Papers:
9.8K
Citations:
2.2W

Organization

O
Ohio University
Scholars:
3.4K
Papers: 2.6K
Citations: 6.0K
U
University System of Ohio
Scholars:
15.5W
Papers: 13.0W
Citations: 200
Cited Papers

Cited Papers

errShare
errSave
Cellular prion protein regulates intracellular hydrogen peroxide level and prevents copper-induced apoptosis
err2004-10-01
err0
PREAI
errTakuya Nishimura; Akikazu Sakudo; Izuru Nakamura; Deug-chan Lee; Yojiro Taniuchi; Keiichi Saeki; Yoshitsugu Matsumoto; Masaharu Ogawa; Suehiro Sakaguchi; Shigeyoshi Itohara; Takashi Onodera
errShare
errSave
Clinico-radiological dissociation of disease activity in MS patients: frequency and clinical relevance
err2020-06-20
err0
errOAAI
errNina L. van Faals; Iris Dekker; Lisanne J. Balk; Bastiaan Moraal; Frederik Barkhof; Bernard M. J. Uitdehaag; Joep Killestein; Mike P. Wattjes
errShare
errSave
18O-tracer study on the rearrangement of carbonyl oxide intermediates to esters
err1985-01-01
err0
PREAI
errKatsuya Ishiguro; Kohtaro Tomizawa; Yasuhiko Sawaki; Hiizu Iwamura
errShare
errSave
Hereditary Spastic Paraplegia
err2017-02-18
err0
PREAI
errPawel P. Liberski; Craig Blackstone
errShare
errSave
High-Gain Metasurface in Polyimide On-Chip Antenna Based on CRLH-TL for Sub-Terahertz Integrated Circuits (vol 10, 4298, 2020)
err2020-08-07
err0
errOAAI
errAlibakhshikenari, Mohammad; Virdee, Bal S.; See, Chan H.; Abd-Alhameed, Raed A.; Falcone, Francisco; Limiti, Ernesto
errShare
errSave
researcher View more