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
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;
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
DOI :
10.1109/GreenCom-iThings-CPSCom.2013.237