DocumentCode
41462
Title
Throughput–Delay Tradeoff in Interference-Free Wireless Networks With Guaranteed Energy Efficiency
Author
Yuzhou Li ; Min Sheng ; Cheng-Xiang Wang ; Xijun Wang ; Yan Shi ; Jiandong Li
Author_Institution
State Key Lab. of Integrated Service Networks, Xidian Univ., Xi´an, China
Volume
14
Issue
3
fYear
2015
fDate
Mar-15
Firstpage
1608
Lastpage
1621
Abstract
Existing works have addressed the tradeoffs between any two of the three performance metrics: throughput, energy efficiency (EE), and delay. In this paper, we unveil the intertwined relations among these three metrics under a unifying framework and particularly investigate the problem of EE-guaranteed throughput-delay tradeoff in interference-free wireless networks. We first propose two admission control schemes, referred to as the first-out and first-in schemes. We then formulate it as two stochastic optimization problems, aiming at throughput maximization (in the first-out scheme) or dropping rate minimization (in the first-in scheme) subject to requirement of EE (RoE), stability, admission control, and transmit power. To solve the problems, the EE-Guaranteed algorithm for throUghput-delAy tRaDeoff (eGuard), respectively called eGuard-I and eGuard-II in the first-out and first-in schemes, is devised. Moreover, with guaranteed RoE, we theoretically show that the eGuard (I and II) can not only push the throughput arbitrarily close to the optimal with tradeoffs in delay but also quantitatively control the throughput-delay performance on demand. Simulation results consolidate the theoretical analysis and particularly show the pros and cons of the two schemes.
Keywords
delays; energy conservation; radio networks; stochastic programming; telecommunication congestion control; RoE; admission control schemes; dropping rate minimization; eGuard-I; eGuard-II; energy efficiency guaranty; first-in schemes; first-out schemes; interference-free wireless networks; requirement of EE-guaranteed throughput-delay tradeoff; stochastic optimization problems; throughput maximization; transmit power; Admission control; Delays; Receivers; Resource management; Stability analysis; Throughput; Wireless networks; Throughput; admission control; delay; energy efficiency; power allocation;
fLanguage
English
Journal_Title
Wireless Communications, IEEE Transactions on
Publisher
ieee
ISSN
1536-1276
Type
jour
DOI
10.1109/TWC.2014.2370647
Filename
6955824
Link To Document