DocumentCode
653343
Title
PSFCS: Robust Emergency Communications Supporting High-Mobility Based on WiMAX MMR Networks
Author
Wen-Kang Jia ; Chia-Yao Chen ; Yaw-Chung Chen
Author_Institution
Dept. of Comput. Sci., Nat. Chiao Tung Univ., Hsinchu, Taiwan
fYear
2013
fDate
20-23 Aug. 2013
Firstpage
1363
Lastpage
1368
Abstract
Nowadays public safety networks are widely deployed to support highly reliable wireless communications in case of emergency. The adoption of standardized systems such as WiMAX for emergency communications represents a significant advance in the off-the-shelf technologies for error detection and error correction. Since it is difficult to fully eliminate the Doppler Effect under high-speed moving environment, we propose an enhanced CRC-based error correction scheme that carries as many extra segmented Frame Check Sequence (FCS) information as sub-blocks of emergency MBS frame, called Progressive and Selective Frame Check Sequence (PSFCS). In a Multi-hop Relay (MMR) environment, a high-mobility mobile station might receive an emergency MBS frame more than once, so the PSFCS could be cross referenced by duplicated frames received. Therefore the PSFCS achieves a significant performance improvement over the legacy FCS scheme in terms of error detection and correction of emergency MBS frames in a WiMAX MMR network operating in transparent mode. The experimental results show that the good put and utilization of high-mobility mobile stations can be improved remarkably.
Keywords
WiMax; cyclic redundancy check codes; emergency management; error correction; error correction codes; error detection codes; mobility management (mobile radio); relay networks (telecommunication); telecommunication network reliability; Doppler effect; MMR environment; PSFCS; WiMAX MMR networks; emergency MBS frame subblocks; emergency communications; enhanced CRC-based error correction scheme; error detection; high-mobility mobile station; high-speed moving environment; legacy FCS scheme; multihop relay environment; progressive-selective frame check sequence; public safety networks; robust emergency communications; segmented frame check sequence information; standardized systems; wireless communication reliability; Error correction; Mobile communication; Modulation; Receivers; Relays; Signal to noise ratio; WiMAX; 802.16m; Cyclic Redundancy Check (CRC); Emergency messaging system; Mobile Multi-hop Relay (MMR) network; error correction;
fLanguage
English
Publisher
ieee
Conference_Titel
Green Computing and Communications (GreenCom), 2013 IEEE and Internet of Things (iThings/CPSCom), IEEE International Conference on and IEEE Cyber, Physical and Social Computing
Conference_Location
Beijing
Type
conf
DOI
10.1109/GreenCom-iThings-CPSCom.2013.237
Filename
6682250
Link To Document