Combining designs of precoder and equalizer for MIMO FBMC-OQAM systems based on power allocation strategies
The filter bank multi-carrier (FBMC) technique is hoped to become a potential candidate for advanced wireless multiple intput multiple output (MIMO) systems as the fifth generation (5G) or the sixth generation (6G) owing to its advantages. In this paper, two combining designs of precoder and equaliz...
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| Veröffentlicht in: | International journal of electronics and communications Jg. 130; S. 153572 |
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| Sprache: | Englisch |
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01.02.2021
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| ISSN: | 1434-8411, 1618-0399 |
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| Abstract | The filter bank multi-carrier (FBMC) technique is hoped to become a potential candidate for advanced wireless multiple intput multiple output (MIMO) systems as the fifth generation (5G) or the sixth generation (6G) owing to its advantages. In this paper, two combining designs of precoder and equalizer for MIMO FBMC offset quadrature amplitude modulation (OQAM) systems are investigated and proposed. These designs are developed basically on power allocation strategies such as the error balance algorithm (EBA) and water-pouring algorithm (WPA). The key idea is how to address bad sub-channels in which they are strengthened with the EBA whereas some really bad sub-channels are discarded with the WPA. The proposed designs are evaluated and compared to outstanding conventional designs based on zero forcing (ZF) and minimum mean square error (MMSE) algorithms via bit error rate (BER) and throughput issues. Simulation results show that the proposed designs can improve significantly the performance of downlink spatial multiplexing systems. |
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| AbstractList | The filter bank multi-carrier (FBMC) technique is hoped to become a potential candidate for advanced wireless multiple intput multiple output (MIMO) systems as the fifth generation (5G) or the sixth generation (6G) owing to its advantages. In this paper, two combining designs of precoder and equalizer for MIMO FBMC offset quadrature amplitude modulation (OQAM) systems are investigated and proposed. These designs are developed basically on power allocation strategies such as the error balance algorithm (EBA) and water-pouring algorithm (WPA). The key idea is how to address bad sub-channels in which they are strengthened with the EBA whereas some really bad sub-channels are discarded with the WPA. The proposed designs are evaluated and compared to outstanding conventional designs based on zero forcing (ZF) and minimum mean square error (MMSE) algorithms via bit error rate (BER) and throughput issues. Simulation results show that the proposed designs can improve significantly the performance of downlink spatial multiplexing systems. |
| ArticleNumber | 153572 |
| Author | Quan, Do Thanh Hieu, Ta Chi Doanh, Bui Quoc Hiep, Pham Thanh |
| Author_xml | – sequence: 1 givenname: Bui Quoc surname: Doanh fullname: Doanh, Bui Quoc email: buiquocdoanh@tcu.edu.vn organization: Faculty of Radio-Electronics Engineering, Le Quy Don Technical University, Hanoi, Viet Nam – sequence: 2 givenname: Do Thanh surname: Quan fullname: Quan, Do Thanh email: dtquan@lqdtu.edu.vn organization: Faculty of Technical Command and Staff, Le Quy Don Technical University, Hanoi, Viet Nam – sequence: 3 givenname: Ta Chi surname: Hieu fullname: Hieu, Ta Chi email: hieunda@mta.edu.vn organization: Faculty of Radio-Electronics Engineering, Le Quy Don Technical University, Hanoi, Viet Nam – sequence: 4 givenname: Pham Thanh surname: Hiep fullname: Hiep, Pham Thanh email: phamthanhhiep@gmail.com organization: Faculty of Radio-Electronics Engineering, Le Quy Don Technical University, Hanoi, Viet Nam |
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| Keywords | FBMC Precoding MIMO OQAM Equalization Overlapping factor Prototype filter |
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