Partial ML Detection for Frequency-Asynchronous Distributed Alamouti-Coded (FADAC) OFDM
To further enhance frequency-asynchronous distributed Alamouti-coded (FADAC) orthogonal frequency division multiplexing (OFDM), we propose a new scheme which combines the partial maximum likelihood detection (PMLD) to the residual intercarrier interference cancellation (RIC). In order to decrease th...
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Veröffentlicht in: | Wireless communications and mobile computing 2019, Vol.2019 (2019), p.1-10 |
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creator | Kim, Bongseok Choi, Kwonhue Na, Dongjun |
description | To further enhance frequency-asynchronous distributed Alamouti-coded (FADAC) orthogonal frequency division multiplexing (OFDM), we propose a new scheme which combines the partial maximum likelihood detection (PMLD) to the residual intercarrier interference cancellation (RIC). In order to decrease the performance gap from intercarrier interference- (ICI-) free level after single time iteration of the RIC, the final stage of the proposed scheme performs the PMLD limited to the symbols of less-reliable decision variables. We show that with the practically acceptable candidate symbol set size, a single iteration for RIC is enough to achieve the ICI-free performance. Moreover, the proposed scheme substantially expands the allowable ranges of the three undesirable terms, i.e., the timing and frequency offsets between the transmit antennas and the multipath delay spreads. |
doi_str_mv | 10.1155/2019/4319802 |
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subjects | Algorithms Antennas Fourier transforms Interference Offsets Orthogonal Frequency Division Multiplexing Receivers & amplifiers |
title | Partial ML Detection for Frequency-Asynchronous Distributed Alamouti-Coded (FADAC) OFDM |
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