TY - GEN
T1 - Distributed device discovery in ProSe environments
AU - Jaffry, Shan
AU - Hasan, Syed Faraz
AU - Gui, Xiang
AU - Kuo, Yaw Wen
N1 - Publisher Copyright:
© 2017 IEEE.
PY - 2017/12/19
Y1 - 2017/12/19
N2 - Reusing the frequency resources has long been a desirable practice in most licensed wireless networks. In future, frequency reuse will be enabled by advanced technologies like device-to-device (D2D) communication which will allow eNB-free data exchange between end devices. However, the first challenge for devices to establish D2D links will be to 'discover' each other in a distributed manner. Even with the availability of network infrastructure, the distributed discovery will offload eNB's processing burden. However, due to the autonomous selection of resources for discovery, issues like half-duplexing and resource-collision will prevent efficient device discovery. In this paper, we present an autonomous method for discovery resources selection by modifying the standard frame structure. Our scheme introduces an additional randomness to the discovery process, which tends to mitigate half-duplexing and collision. The results have shown that the proposed scheme improves D2D discovery compared to conventional method, especially with low SINR and for larger DUE communication range.
AB - Reusing the frequency resources has long been a desirable practice in most licensed wireless networks. In future, frequency reuse will be enabled by advanced technologies like device-to-device (D2D) communication which will allow eNB-free data exchange between end devices. However, the first challenge for devices to establish D2D links will be to 'discover' each other in a distributed manner. Even with the availability of network infrastructure, the distributed discovery will offload eNB's processing burden. However, due to the autonomous selection of resources for discovery, issues like half-duplexing and resource-collision will prevent efficient device discovery. In this paper, we present an autonomous method for discovery resources selection by modifying the standard frame structure. Our scheme introduces an additional randomness to the discovery process, which tends to mitigate half-duplexing and collision. The results have shown that the proposed scheme improves D2D discovery compared to conventional method, especially with low SINR and for larger DUE communication range.
KW - D2D communication
KW - Distributed device discovery
KW - Resource allocation
UR - https://www.scopus.com/pages/publications/85044220852
U2 - 10.1109/TENCON.2017.8227935
DO - 10.1109/TENCON.2017.8227935
M3 - Conference contribution
AN - SCOPUS:85044220852
T3 - IEEE Region 10 Annual International Conference, Proceedings/TENCON
SP - 614
EP - 618
BT - TENCON 2017 - 2017 IEEE Region 10 Conference
PB - IEEE, Institute of Electrical and Electronics Engineers
T2 - 2017 IEEE Region 10 Conference, TENCON 2017
Y2 - 5 November 2017 through 8 November 2017
ER -