Ultra Low-Power SDM-based Circuit-Switching for Networks-on-Chip

📅 2026-05-06
📈 Citations: 0
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📝 Abstract
In many modern AI chips and multicore systems-on-chip, embedded applications exhibit predictable inter-core traffic behavior that can be characterized at design time. For such applications, a variety of design-time traffic management and network optimization techniques can be employed to improve NoC power and performance. To exploit this predictability, we propose a novel low-power circuit-switched NoC design. It uses the Spatial Division Multiplexing (SDM) technique to establish circuits, implemented as subsets of NoC wires, for the communication flows of a target application. To further reduce the power profile of SDM, the design incorporates a new router architecture that combines hard-wired switches with conventional programmable crossbars. The architecture is complemented by an algorithm that maps application tasks onto a mesh NoC and assigns an SDM route with adequate bit-width to each circuit built for inter-task communication flows. Compared with a conventional packet-switched NoC, the proposed approach achieves approximately 38% lower NoC power consumption, 19% smaller area, and 12% lower packet latency.
Problem

Research questions and friction points this paper is trying to address.

Networks-on-Chip
circuit-switching
power consumption
traffic predictability
Spatial Division Multiplexing
Innovation

Methods, ideas, or system contributions that make the work stand out.

Spatial Division Multiplexing
circuit-switched NoC
low-power design
router architecture
traffic predictability
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M
Meysam Zaeemi
School of Electrical and Computer Engineering, College of Engineering, University of Tehran, Tehran, Iran
Mehdi Modarressi
Mehdi Modarressi
Associate Professor of Computer Engineering, School of ECE, University of Tehran
Network-on-chipComputer ArchitectureHardware for AI