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  4. Power Control and Beamforming Design for Receivers with Inter-Cell Interference Cancellation in Heterogeneous Networks
 
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Power Control and Beamforming Design for Receivers with Inter-Cell Interference Cancellation in Heterogeneous Networks

Journal
IEEE WOCC
Date Issued
2015
Author(s)
Y. Y. Lan
W. H. Chiang
I. W. Lai
T. D. Chiueh
TZI-DAR CHIUEH  
DOI
10.1109/wocc.2015.7346177
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/429982
Abstract
Most communication systems try to maximize the signal-to-interference ratio (SINR) for better detection performance. This paper presents a new design philosophy under heterogeneous networks that makes the interference power stronger such that a receiver equipped with interference cancellation can detect and remove interference more thoroughly. As such, a better detection performance for the relatively weaker desired signal can be achieved. Equipped with mathematical derivation of the theoretical bit error rate (BER), we propose an approach that determines the most suitable power ratio between the interference and the intended signal, namely interference-to-signal ratio (ISR), leading to minimum BER. In addition, for energy efficiency we apply transmit- and receive-beamforming as well as power control to minimize the transmit power under an acceptable BER. Finally, simulation results are validated by an over-the-air field trial using software-defined radio platform under the scenario of the cell range expansion in heterogeneous networks. © 2015 IEEE.
SDGs

[SDGs]SDG7

Other Subjects
Beamforming; Bit error rate; Computer software; Energy efficiency; Heterogeneous networks; Optical communication; Power control; Signal detection; Software radio; Spurious signal noise; Cell range expansions; Detection performance; Intercell interference; Interference cancellation; Interference-to-signal ratios; Mathematical derivation; Signal to interference ratio; Software-defined radios; Signal interference
Type
conference paper

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