Green communication systems via a wavefront multiplexing technique

Fuente: Wiley Open Access
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Autori principali: Hen‐Geul Yeh, Joe Lee
Natura: Artículo Open Access
Pubblicazione: Wiley 2024
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author Hen‐Geul Yeh
Joe Lee
author_facet Hen‐Geul Yeh
Joe Lee
Hen‐Geul Yeh
Joe Lee
collection Wiley Open Access
contents Green communication systems via a wavefront multiplexing technique Hen‐Geul Yeh Joe Lee Systems Engineering Abstract A green communication scheme using an orthogonal wavefront (WF) multiplexing (Muxing) scheme spatially combined with orthogonal frequency‐division multiplexing (OFDM) techniques is proposed. It forms a spatial WF OFDM transceiver. The WF Muxing technique serves as the preprocessing and postprocessing method of the WF OFDM transceiver. With coordinated multiple point forward transmission, this spatial WF OFDM system establishes a communication network. It can be applied to multiple base stations (BSs) with down links to single or multiple mobile units (MUs). Although signals are received non‐coherently due to different distances between BSs and MUs, they can be compensated and coherently combined via adaptive equalizers at MUs. This is achieved by using pilot signals with an optimization method at the receiver of MUs. Simulation results demonstrate that the WF OFDM scheme obtains the same bit error rate (BER) as predicted by theory in an additive white Gaussian noise (AWGN) channel. Moreover, the required effective equivalent isotropically radiated power (EIRP) from BSs to the MUs is significantly reduced due to multiple non‐coherent transmission. Accordingly, the interference to adjacent frequency bands’ signals will be low. This green communication network is achieved via the combination of WF Muxing, OFDM, and optimization at the receiver together. More investigations are needed to show that this WF OFDM transceiver can be applied to frequency selective mobile fading channels. 10.1002/sys.21774 http://creativecommons.org/licenses/by/4.0/
doi_str_mv 10.1002/sys.21774
format Artículo Open Access
id wiley_oa_10_1002_sys_21774
institution Wiley Open Access
license_str_mv http://creativecommons.org/licenses/by/4.0/
publishDate 2024
publisher Wiley
record_format wiley_oa
spellingShingle Green communication systems via a wavefront multiplexing technique
Hen‐Geul Yeh
Joe Lee
Systems Engineering
Green communication systems via a wavefront multiplexing technique Hen‐Geul Yeh Joe Lee Systems Engineering Abstract A green communication scheme using an orthogonal wavefront (WF) multiplexing (Muxing) scheme spatially combined with orthogonal frequency‐division multiplexing (OFDM) techniques is proposed. It forms a spatial WF OFDM transceiver. The WF Muxing technique serves as the preprocessing and postprocessing method of the WF OFDM transceiver. With coordinated multiple point forward transmission, this spatial WF OFDM system establishes a communication network. It can be applied to multiple base stations (BSs) with down links to single or multiple mobile units (MUs). Although signals are received non‐coherently due to different distances between BSs and MUs, they can be compensated and coherently combined via adaptive equalizers at MUs. This is achieved by using pilot signals with an optimization method at the receiver of MUs. Simulation results demonstrate that the WF OFDM scheme obtains the same bit error rate (BER) as predicted by theory in an additive white Gaussian noise (AWGN) channel. Moreover, the required effective equivalent isotropically radiated power (EIRP) from BSs to the MUs is significantly reduced due to multiple non‐coherent transmission. Accordingly, the interference to adjacent frequency bands’ signals will be low. This green communication network is achieved via the combination of WF Muxing, OFDM, and optimization at the receiver together. More investigations are needed to show that this WF OFDM transceiver can be applied to frequency selective mobile fading channels. 10.1002/sys.21774 http://creativecommons.org/licenses/by/4.0/
title Green communication systems via a wavefront multiplexing technique
topic Systems Engineering
url https://incose.onlinelibrary.wiley.com/doi/10.1002/sys.21774