Reliable Physical-layer Network Coding Supporting Real Applications
Lizhao You, Soung Chang Liew, Lu Lu

TL;DR
This paper introduces a real-time, reliable physical-layer network coding system supporting TCP/IP applications, demonstrating high throughput and practical implementation on general-purpose hardware.
Contribution
The paper presents the first real-time PNC prototype supporting TCP/IP applications, addressing synchronization, complexity reduction, reliability, and application interfacing.
Findings
Achieved near-physical layer data rate at high SNR
Supported TCP/IP applications like image exchange and video conferencing
Demonstrated real-time operation on general-purpose processors
Abstract
This paper presents the first reliable physical-layer network coding (PNC) system that supports real TCP/IP applications for the two-way relay network (TWRN). Theoretically, PNC could boost the throughput of TWRN by a factor of 2 compared with traditional scheduling (TS) in the high signal-to-noise (SNR) regime. Although there have been many theoretical studies on PNC performance, there have been relatively few experimental and implementation efforts. Our earlier PNC prototype, built in 2012, was an offline system that processed signals offline. For a system that supports real applications, signals must be processed online in real-time. Our real-time reliable PNC prototype, referred to as RPNC, solves a number of key challenges to enable the support of real TCP/IP applications. The enabling components include: 1) a time-slotted system that achieves us-level synchronization for the PNC…
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Taxonomy
TopicsCooperative Communication and Network Coding · Full-Duplex Wireless Communications · Advanced Wireless Communication Technologies
