摘要
To boost the spectral efficiency of cooperative communication systems, full duplex relays (FDRs) have been widely considered due to the concurrent signal transmission and reception at the relay. However, the self-interference (SI) is always a main problem that deteriorates the system performance. Most conventional FDR designs focus on narrowband transmission and treat SI as a harmful signal, consequently aiming to cancel SI as clear as possible. However, the relay transceiver can be inherently modeled as an infinite impulse response (IIR) filter by recognizing SI as a delayed desired signal. Based on this concept, we propose a novel design where the finite-length source, FDR filters, and the linear minimum mean-squared error (MMSE) equalizer are jointly optimized for frequency-selective fading channels. Simulations demonstrate the effectiveness of our design that preserving partial SI indeed enables further performance improvement.
| 原文 | English |
|---|---|
| 主出版物標題 | 2020 IEEE 92nd Vehicular Technology Conference, VTC 2020-Fall - Proceedings |
| 發行者 | Institute of Electrical and Electronics Engineers Inc. |
| ISBN(電子) | 9781728194844 |
| DOIs | |
| 出版狀態 | Published - 11月 2020 |
| 事件 | 92nd IEEE Vehicular Technology Conference, VTC 2020-Fall - Virtual, Victoria, Canada 持續時間: 18 11月 2020 → … |
出版系列
| 名字 | IEEE Vehicular Technology Conference |
|---|---|
| 卷 | 2020-November |
| ISSN(列印) | 1550-2252 |
Conference
| Conference | 92nd IEEE Vehicular Technology Conference, VTC 2020-Fall |
|---|---|
| 國家/地區 | Canada |
| 城市 | Virtual, Victoria |
| 期間 | 18/11/20 → … |
文獻附註
Publisher Copyright:© 2020 IEEE.
指紋
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