DocumentCode
2760565
Title
Closed Loop Cross Layer Scheduling for Goodput Maximization in Frequency Selective Environment with No CSIT
Author
Ho, Zuleita K M ; Lau, Vincent K N ; Cheng, Roger S K
Author_Institution
Dept. of Electron. & Comput. Eng., Hong Kong Univ. of Sci. & Technol., Clear Water Bay
fYear
2007
fDate
11-15 March 2007
Firstpage
299
Lastpage
303
Abstract
Adapting user selection, power allocation and rate allocation, cross layer centralized scheduling can achieve a tremendous gain due to multiuser selection diversity in wireless networks. Yet, conventional cross layer designs all require channel state information at transmitters (CSIT), which is difficult to obtain in practice. In this paper, a closed loop cross layer design with no CSIT in a block fading frequency selective environment is proposed as an extension of flat fading case in (Ka Ming Ho, 2006). The solution to optimal power, rate allocation and user selection involves stochastic programming and thus has high complexity, especially when the channel is highly frequency selective. Instead, we would like to focus on two suboptimal algorithms, namely CP-TX and OP-TX, which are based on ACK/NAK feedbacks from selected mobiles. In practical situations, OP-TX can achieve more than 67 % of the goodput of the optimal algorithm.
Keywords
fading channels; stochastic programming; transmitters; block fading; channel state information; closed loop cross layer design; cross layer scheduling; frequency selective; maximization; multiuser selection diversity; power allocation; stochastic programming; transmitters; wireless networks; Base stations; Channel capacity; Cross layer design; Error correction codes; Fading; Feedback; Frequency; Processor scheduling; Radio spectrum management; Stochastic processes;
fLanguage
English
Publisher
ieee
Conference_Titel
Wireless Communications and Networking Conference, 2007.WCNC 2007. IEEE
Conference_Location
Kowloon
ISSN
1525-3511
Print_ISBN
1-4244-0658-7
Electronic_ISBN
1525-3511
Type
conf
DOI
10.1109/WCNC.2007.61
Filename
4224306
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