Multi-user detection for the downlink of NOMA systems with multi-antenna schemes and power-efficient amplifiers / F. C. Ribeiro, J. Guerreiro, R. Dinis [et al.]
Уровень набора: Physical CommunicationЯзык: английский.Страна: .Резюме или реферат: Non-orthogonal multiple access (NOMA) schemes have been recognized as a promising multiple access method for the fifth generation (5G) communication systems. In NOMA, multiple users can share the same physical channel, which allows for a substantial increase in capacity gains when comparing to conventional orthogonal multiple access (OMA) techniques. This paper considers the downlink transmission of NOMA schemes combined with single-carrier (SC) signals. We present a multi-antenna transmission technique that is compatible with highly efficient power amplifiers without requiring any pre-processing. Furthermore, a multi-user detection scheme based on iterative frequency-domain equalization (FDE) is presented. We show that besides the high power-efficiency of the transmission scheme, the system’s performance can be close to the matched filter bound (MFB)..Примечания о наличии в документе библиографии/указателя: [References: p. 205 (29 tit.)].Аудитория: .Тематика: труды учёных ТПУ | электронный ресурс | NOMA | SC-FDE | iterative frequency-domain detection | multi-antenna systems | efficient power amplification | обнаружение | частотная область | мощность | линии связи | усилители | 5G Ресурсы он-лайн:Щелкните здесь для доступа в онлайн[References: p. 205 (29 tit.)]
Non-orthogonal multiple access (NOMA) schemes have been recognized as a promising multiple access method for the fifth generation (5G) communication systems. In NOMA, multiple users can share the same physical channel, which allows for a substantial increase in capacity gains when comparing to conventional orthogonal multiple access (OMA) techniques. This paper considers the downlink transmission of NOMA schemes combined with single-carrier (SC) signals. We present a multi-antenna transmission technique that is compatible with highly efficient power amplifiers without requiring any pre-processing. Furthermore, a multi-user detection scheme based on iterative frequency-domain equalization (FDE) is presented. We show that besides the high power-efficiency of the transmission scheme, the system’s performance can be close to the matched filter bound (MFB).
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