Space-time/frequency line coded OFDM : system design and practical implementation
In this paper, we investigate a class of new multiple-input multiple-output (MIMO) transmission schemes, dubbed space time line code (STLC), in the context of different mobility situations. We extend its original structure into space and frequency domains and propose a novel frequency line code (SFL...
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sg-ntu-dr.10356-1465782021-03-02T02:43:01Z Space-time/frequency line coded OFDM : system design and practical implementation Wu, Chaowu Xiao, Yue Guan, Yong Liang Wang, Jinfu Li, Xun Yang, Ping School of Electrical and Electronic Engineering Engineering::Electrical and electronic engineering OFDM Space-time Line Coding In this paper, we investigate a class of new multiple-input multiple-output (MIMO) transmission schemes, dubbed space time line code (STLC), in the context of different mobility situations. We extend its original structure into space and frequency domains and propose a novel frequency line code (SFLC) for combining with orthogonal frequency division multiplexing (OFDM) in order to achieve potential diversity gains in time-varying multipath fading channels. Specifically, at the transmitter, the STLC/SFLC-OFDM scheme exploits the channel state information (CSI) to linearly encode successive modulated symbols in the time/frequency domain to achieve full diversity gain. At the receiver, it can retrieve the transmit symbols without full CSI, thanks to its special structure. We analyse the impact of time-variant channels to STLC and SFLC to show the expected performance degradation in practical channel, especially in the case of different mobile speeds. Our analysis and simulations show that the BER performance degrades with increasing correlation coefficient, which makes STLC-OFDM more robust in channels with abundant multipath spread, and SFLC-OFDM more robust in channels with high mobility speed. Meanwhile, a guideline is provided for switching when the communication environment changes. Finally, we carry out the practical implementation of STLC-OFDM and SFLC-OFDM schemes and characterize their performance with both computer simulations and an experimental testbed. Published version 2021-03-02T02:43:01Z 2021-03-02T02:43:01Z 2019 Journal Article Wu, C., Xiao, Y., Guan, Y. L., Wang, J., Li, X., & Yang, P. (2019). Space-time/frequency line coded OFDM : system design and practical implementation. IEEE Access, 7, 151915-151928. doi:10.1109/access.2019.2947216 2169-3536 0000-0002-2127-8947 0000-0002-6559-3252 https://hdl.handle.net/10356/146578 10.1109/ACCESS.2019.2947216 2-s2.0-85078494227 7 151915 151928 en IEEE Access © 2019 IEEE. This journal is 100% open access, which means that all content is freely available without charge to users or their institutions. All articles accepted after 12 June 2019 are published under a CC BY 4.0 license, and the author retains copyright. Users are allowed to read, download, copy, distribute, print, search, or link to the full texts of the articles, or use them for any other lawful purpose, as long as proper attribution is given. application/pdf |
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Engineering::Electrical and electronic engineering OFDM Space-time Line Coding Wu, Chaowu Xiao, Yue Guan, Yong Liang Wang, Jinfu Li, Xun Yang, Ping Space-time/frequency line coded OFDM : system design and practical implementation |
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In this paper, we investigate a class of new multiple-input multiple-output (MIMO) transmission schemes, dubbed space time line code (STLC), in the context of different mobility situations. We extend its original structure into space and frequency domains and propose a novel frequency line code (SFLC) for combining with orthogonal frequency division multiplexing (OFDM) in order to achieve potential diversity gains in time-varying multipath fading channels. Specifically, at the transmitter, the STLC/SFLC-OFDM scheme exploits the channel state information (CSI) to linearly encode successive modulated symbols in the time/frequency domain to achieve full diversity gain. At the receiver, it can retrieve the transmit symbols without full CSI, thanks to its special structure. We analyse the impact of time-variant channels to STLC and SFLC to show the expected performance degradation in practical channel, especially in the case of different mobile speeds. Our analysis and simulations show that the BER performance degrades with increasing correlation coefficient, which makes STLC-OFDM more robust in channels with abundant multipath spread, and SFLC-OFDM more robust in channels with high mobility speed. Meanwhile, a guideline is provided for switching when the communication environment changes. Finally, we carry out the practical implementation of STLC-OFDM and SFLC-OFDM schemes and characterize their performance with both computer simulations and an experimental testbed. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Wu, Chaowu Xiao, Yue Guan, Yong Liang Wang, Jinfu Li, Xun Yang, Ping |
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Article |
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Wu, Chaowu Xiao, Yue Guan, Yong Liang Wang, Jinfu Li, Xun Yang, Ping |
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Wu, Chaowu |
title |
Space-time/frequency line coded OFDM : system design and practical implementation |
title_short |
Space-time/frequency line coded OFDM : system design and practical implementation |
title_full |
Space-time/frequency line coded OFDM : system design and practical implementation |
title_fullStr |
Space-time/frequency line coded OFDM : system design and practical implementation |
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Space-time/frequency line coded OFDM : system design and practical implementation |
title_sort |
space-time/frequency line coded ofdm : system design and practical implementation |
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2021 |
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https://hdl.handle.net/10356/146578 |
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1695706215314620416 |