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A Joint Power and Subchannel Allocation Scheme Maximizing System Capacity in Indoor Dense Mobile Communication Systems

Authors
Kim, JCho, DH
Issue Date
Nov-2010
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Citation
IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, v.59, no.9, pp 4340 - 4353
Pages
14
Journal Title
IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY
Volume
59
Number
9
Start Page
4340
End Page
4353
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/147868
DOI
10.1109/TVT.2010.2070816
ISSN
0018-9545
1939-9359
Abstract
Indoor mobile communication systems (or simply indoor systems) are expected to yield significant improvement of capacity and coverage at low cost on mobile communication systems. However, the indoor system will likely be in dense environments, in which many cells exist in a small region, and a great portion of the coverage of a cell is overlapped by that of other cells. In dense environments, the systems are exposed to strong intercell interference, which is critical to system performance and should be mitigated by a novel radio resource management (RRM) scheme. In this paper, we first derive the characteristics of an optimal allocation of power and subchannel in dense environments. We prove that a special form of power allocation, which is called binary power allocation, in which only one transmitter transmits a signal for each subchannel, performs better than power allocation by conventional schemes. Then, we propose an efficient scheme for jointly allocating power and a subchannel based on the binary power allocation. Simulation and numerical results show that the proposed scheme can achieve larger system capacity than conventional schemes.
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Kim, Ju Yeop
첨단소재·전자융합공학부 (지능형전자시스템전공)
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