A Biologically-Inspired Power Control Algorithm for Energy-Efficient Cellular Networks

Citations

WEB OF SCIENCE

2
Citations

SCOPUS

5

초록

Most of the energy used to operate a cellular network is consumed by a base station (BS), and reducing the transmission power of a BS can therefore afford a substantial reduction in the amount of energy used in a network. In this paper, we propose a distributed transmit power control (TPC) algorithm inspired by bird flocking behavior as a means of improving the energy efficiency of a cellular network. Just as each bird in a flock attempts to match its velocity with the average velocity of adjacent birds, in the proposed algorithm, each mobile station (MS) in a cell matches its rate with the average rate of the co-channel MSs in adjacent cells by controlling the transmit power of its serving BS. We verify that this bio-inspired TPC algorithm using a local rate-average process achieves an exponential convergence and maximizes the minimum rate of the MSs concerned. Simulation results show that the proposed TPC algorithm follows the same convergence properties as the flocking algorithm and also effectively reduces the power consumption at the BSs while maintaining a low outage probability as the inter-cell interference increases; in so doing, it significantly improves the energy efficiency of a cellular network.

키워드

green base station; flocking model; energy efficiency; power control algorithm; bio-inspired algorithm; energy-efficient cellular network; COGNITIVE RADIO NETWORKS; WIRELESS NETWORKS; GREEN; THROUGHPUT; PERFORMANCE; CHANNELS; SYSTEMS
제목
A Biologically-Inspired Power Control Algorithm for Energy-Efficient Cellular Networks
저자
Choi, Hyun-Ho; Lee, Jung-Ryun
DOI
10.3390/en9030161
발행일
2016-03
유형
Article
저널명
Energies
권
9
호
3

파일 다운로드

Thumbnail