Abstract
In order to reduce the number of retransmissions and save power for the source node, we propose a two-phase coded scheme to achieve reliable broadcast from the source to a group of users with minimal source transmissions. In the first phase, the information packets are encoded with batched sparse (BATS) code, which are then broadcasted by the source node until the file can be cooperatively decoded by the user group. In the second phase, each user broadcasts the re-encoded packets to its peers based on their respective received packets from the first phase, so that the file can be decoded by each individual user. The performance of the proposed scheme is analyzed and the rank distribution at the moment of decoding is derived, which is used as input for designing the optimal BATS code. Simulation results show that the proposed scheme can reduce the total number of retransmissions compared with the traditional single-phase broadcast with optimal erasure codes. Furthermore, since a large number of transmissions are shifted from the source node to the users, power consumptions at the source node is significantly reduced.
Original language | English |
---|---|
Title of host publication | 2015 IEEE International Conference on Communications, ICC 2015 |
Publisher | Institute of Electrical and Electronics Engineers Inc. |
Pages | 2048-2053 |
Number of pages | 6 |
ISBN (Electronic) | 9781467364324 |
DOIs | |
Publication status | Published - Sept 9 2015 |
Externally published | Yes |
Event | IEEE International Conference on Communications, ICC 2015 - London, United Kingdom Duration: Jun 8 2015 → Jun 12 2015 |
Publication series
Name | IEEE International Conference on Communications |
---|---|
Volume | 2015-September |
ISSN (Print) | 1550-3607 |
Conference
Conference | IEEE International Conference on Communications, ICC 2015 |
---|---|
Country/Territory | United Kingdom |
City | London |
Period | 6/8/15 → 6/12/15 |
Bibliographical note
Publisher Copyright:© 2015 IEEE.
ASJC Scopus Subject Areas
- Computer Networks and Communications
- Electrical and Electronic Engineering