Title
Wireless network power optimisation using relay stations blossoming and withering technique
Abstract
Power consumption of wireless network is increasing as the demands in wireless data rates are escalating in modern life. Base stations are the major power consumption component in the wireless network. Therefore, the main challenge is to reduce the total power consumed in the network while maintaining the network coverage and its capacity. In this paper, a new relay switching perspective is introduced for relay blossoming and withering algorithm. First, relay switching is considered as a function of time representing the rate of active relays. The effect of the rate of active relays, arrival rate and average load factor of relays on the total network power consumption is modelled. It is found that the rate of active relay function that optimises the network power consumption obeys linear first-order ordinary differential equation. The effect of different synthesised arrival rate profiles on the rate of active relay is presented. Moreover, relative relay to base station capacity parameter is defined, and its effect on the power optimisation is investigated. Based on the solutions of the ordinary differential equation, an approximate fuzzy-based relay sleeping mode is introduced. The fuzzy logic sleeping mode utilises the arrival rate and its derivative as inputs. The solution of the differential equations shows that power saving up to 45 and 30 per cent can be achieved in sleeping and idling modes, respectively, in contrast to 42 per cent achieved from the fuzzy sleeping mode. The increasing slope of the arrival rate results in less power saving. Copyright (C) 2015 John Wiley & Sons, Ltd.
Year
DOI
Venue
2017
10.1002/ett.2954
TRANSACTIONS ON EMERGING TELECOMMUNICATIONS TECHNOLOGIES
Field
DocType
Volume
Differential equation,Base station,Wireless network,Ordinary differential equation,Load factor,Fuzzy logic,Engineering,Electrical engineering,Relay,Power consumption
Journal
28.0
Issue
ISSN
Citations 
SP3.0
2161-3915
1
PageRank 
References 
Authors
0.36
10
6
Name
Order
Citations
PageRank
aida alsamawi141.46
A. Sali216933.13
liyth nissirat310.36
Nor Kamariah Noordin410023.69
Mohamed Othman538371.95
Fazirulhisyam Hashim69525.69