Performance of OFDM with M-QAM modulation and optimal loading over rayleigh fading channels
| Author | Digham F.F. |
| Author | Hasna , Mazen |
| Available date | 2022-04-26T11:07:00Z |
| Publication Date | 2004 |
| Publication Name | IEEE Vehicular Technology Conference |
| Resource | Scopus |
| Abstract | We present optimum bit and power loading algorithms for orthogonal frequency division multiplexing (OFDM) systems using an M-ary quadrature amplitude modulation (M-QAM) scheme. Several scenarios for the amount of channel state information (CSI) available at the transmitter are investigated. These include statistical, quasi-statistical, and instantaneous CSI. The optimality criterion used is minimizing the average/instantaneous total bit error rate while fulfilling total power budget and spectral efficiency constraints. Numerical examples show that optimizing the allocation of bits/power greatly enhances the system performance in the instantaneous CSI mode while no much gain is expected in either statistical or quasi-statistical modes. They also show that the system performance is more sensitive to bit allocation than to power allocation. Further, it is shown that the quasi-statistical-CSI based loading yields the best performance given the complexity/performance tradeoff. |
| Language | en |
| Publisher | IEEE |
| Subject | Carrier-to-noise ratio (CNR) Channel state information (CSI) Feedback delay Intersymbol interference (ISI) Adaptive algorithms Bit error rate Computational complexity Multicarrier modulation Quadrature amplitude modulation Rayleigh fading Orthogonal frequency division multiplexing |
| Type | Conference |
| Pagination | 479-483 |
| Issue Number | 1 |
| Volume Number | 60 |
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Electrical Engineering [2850 items ]

