A new design of OFDM for ultra-wideband systems

In this paper, a three-dimensional (3-D) orthogonal frequency division multiplexing (OFDM) is introduced. In the new OFDM, a 3-D signal mapper and 2-D inverse discrete Fourier transform are used to allocate 3-D signals to OFDM subchannels and to modulate the signals, respectively. The minimum Euclid...

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Hauptverfasser: Eun Chang Choi, Jae Doo Huh, Seog Geun Kang
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description In this paper, a three-dimensional (3-D) orthogonal frequency division multiplexing (OFDM) is introduced. In the new OFDM, a 3-D signal mapper and 2-D inverse discrete Fourier transform are used to allocate 3-D signals to OFDM subchannels and to modulate the signals, respectively. The minimum Euclidean distance of the 3-D signal mapper is much farther than that of the 2-D mapper if both mappers are normalized to have the same average power. As a result, the proposed OFDM has much improved error performance as compared with the conventional scheme.
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subjects Binary sequences
Constellation diagram
Design engineering
Discrete Fourier transforms
Euclidean distance
OFDM modulation
Polarization shift keying
Signal mapping
Ultra wideband technology
Wireless communication
title A new design of OFDM for ultra-wideband systems
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