Samenvatting
Future generation mobile communications running on mm-wave frequencies will require great robustness against frequency selective channels. In this paper, we evaluate the transmission performance of 4.9 Gb/s wavelet-coded orthogonal frequency division multiplexing (OFDM) signals on a 10 km fiber plus 58 m wireless radio-over-fiber link using a mm-wave radio frequency carrier. The results show that a 2 × 128 wavelet-coded OFDM system achieves a bit-error rate of 1e-4 with nearly 2.5 dB less signal-to-noise ratio than a convolutional coded OFDM system with equivalent spectral efficiency for 8 GHz-wide signals with 512 subcarriers on a carrier frequency of 86 GHz. Our findings confirm the Tzannes’ theory that wavelet coding enables high diversity gains with a low complexity receiver and, most notably, without compromising the system’s spectral efficiency.
Originele taal-2 | Engels |
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Artikelnummer | 7919161 |
Pagina's (van-tot) | 2803-2809 |
Aantal pagina's | 7 |
Tijdschrift | Journal of Lightwave Technology |
Volume | 35 |
Nummer van het tijdschrift | 14 |
DOI's | |
Status | Gepubliceerd - 15 jul. 2017 |
Extern gepubliceerd | Ja |