DocumentCode
3604342
Title
Prototype of Virtual Full Duplex via Rapid On-Off-Division Duplex
Author
Zhen Tong ; Russ, Christina ; Vanka, Sundaram ; Haenggi, Martin
Author_Institution
Dept. of Electr. Eng., Univ. of Notre Dame, Notre Dame, IN, USA
Volume
63
Issue
10
fYear
2015
Firstpage
3829
Lastpage
3841
Abstract
We design and implement a software-radio system for rapid on-off-division duplex (RODD), a scheme to achieve virtual full-duplex communication at the level of a transmission frame. RODD is based on the insight that it is not necessary to separate a node´s transmission and reception at the timescale of a frame. Instead, RODD allows each node in a network to follow a different random on-off signaling signature to transmit during its own on-slots and listen to its neighbors through its own off-slots. Over one frame interval, each node broadcasts its message to its neighbors while recovering its neighbors´ messages from the superposed signals received via its own off-slots. In this paper, we describe an RODD prototype to prove its key concepts, including redesigned synchronization and coding schemes. Simulation results are presented for comparison with the measurements obtained from a software-defined radio implementation of RODD. The effects of on-off signaling on the performance are investigated experimentally. In particular, the bit error rate is measured and compared with the simulation results. Our results indicate that virtual full duplex is feasible on a USRPs/LabVIEW platform via RODD.
Keywords
software radio; RODD prototype; node reception; node transmission; on-off signaling signature; rapid on-off-division duplex; software-defined radio implementation; superposed signals; virtual full duplex prototype; virtual full-duplex communication; Prototypes; Radio frequency; Receiving antennas; Synchronization; Training; Transmitting antennas; Full Duplex; Full duplex; Rapid On-Off-Division Duplex; Software-Defined Radio; Universal Software Radio Peripheral; rapid on-off-division duplex; software-defined radio; universal software radio peripheral;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2015.2465958
Filename
7182306
Link To Document