Title
Study On Resource Optimization For Heterogeneous Networks
Abstract
This work studies the benefits of heterogeneous cellular networks with overlapping picocells in a large macrocell. We consider three different strategies for resource allocation and cell association. The first model employs a spectrum overlapping strategy with an SINR-based cell association. The second model avoids the interference between macrocell and picocell through a spectrum splitting strategy. Furthermore, picocell range expansion is also considered in this strategy to enable a load balancing between the macrocell and picocells. The last model is a hybrid one, called as fractional spectrum splitting strategy, where spectrum splitting strategy is only applied at the picocell-edge, while the picocell-inner reuses the spectrum of the macrocell. We constructs resource allocation optimization problem for these strategies to maximize the system rate. Our results show that in terms of system rate, all the three strategies outperform the performance of macrocell-only case, which shows the benefit of heterogeneous networks. Moreover, fractional spectrum splitting strategy provides highest system rate at the expense of outage user rate degradation due to inter-macro-pico interference. Spectrum overlapping model provides the second highest system rate gain and also improves outage user rate owing to full spectrum reuse and the benefit of macro diversity, while spectrum splitting model achieves a moderate system rate gain.
Year
DOI
Venue
2012
10.1587/transcom.E95.B.1198
IEICE TRANSACTIONS ON COMMUNICATIONS
Keywords
Field
DocType
heterogeneous network, spectrum allocation, power allocation, cell range expansion, spectral efficiency
Computer science,Computer network,Spectral efficiency,Frequency allocation,Heterogeneous network,Distributed computing
Journal
Volume
Issue
ISSN
E95B
4
0916-8516
Citations 
PageRank 
References 
7
0.69
10
Authors
9
Name
Order
Citations
PageRank
Gia Khanh Tran111824.54
Shinichi Tajima2202.44
Rindranirina Ramamonjison3544.28
Kei Sakaguchi430249.22
Kiyomichi Araki528656.35
Shoji Kaneko6598.42
Noriaki Miyazaki76012.48
Satoshi Konishi8366.41
Yoji Kishi94311.81