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时分双工MIMO放大转发中继系统中下行链路的联合鲁棒设计 被引量:1
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作者 王海红 王欣 魏急波 《国防科技大学学报》 EI CAS CSCD 北大核心 2013年第4期87-92,共6页
考虑了时分双工MIMO放大转发中继系统中下行链路基站预编码器、中继预编码器与用户均衡器的联合设计问题。在实际应用中信道估计误差以及信道互易延迟会显著恶化基于理想信道状态信息(CSI)的联合设计性能。从估计误差的分布和互易延迟... 考虑了时分双工MIMO放大转发中继系统中下行链路基站预编码器、中继预编码器与用户均衡器的联合设计问题。在实际应用中信道估计误差以及信道互易延迟会显著恶化基于理想信道状态信息(CSI)的联合设计性能。从估计误差的分布和互易延迟的时间相关特性出发,建立了综合考虑两方面因素的联合"估计误差-互易延迟"信道模型。基于该模型,针对第一跳传输设计了信道奇异值分解的基站预编码方案,避免了第二跳CSI的反馈开销,然后将给定中继总发送功率约束下最小化用户和均方误差(SMSE)的中继预编码器和用户均衡器进行联合优化,并利用KKT(Karush-Kuhn-Tucker)条件给出了该优化问题的闭合解。数值结果验证了所提方案的鲁棒性和有效性。 展开更多
关键词 放大转发中继 下行链路 联合鲁棒设计 时分双工mimo
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Simple Closed-Loop Method to Compensate Interference Asymmetry in Time-Division Duplex MIMO-OFDM Systems 被引量:1
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作者 宋荣方 曾端阳 《Journal of Shanghai Jiaotong university(Science)》 EI 2009年第4期503-509,共7页
In wireless communications systems with time-division duplex (TDD) deployment, channel reciprocity and symmetric interference between transmitter and receiver sides are two widely-adopted assumptions for the design of... In wireless communications systems with time-division duplex (TDD) deployment, channel reciprocity and symmetric interference between transmitter and receiver sides are two widely-adopted assumptions for the design of optimal adaptation transmission mode. However, in practice, there is an undesirable but non-negligible effect, namely the asymmetric interference, that makes the assumptions no longer valid. In this paper, a simple closed-loop feedback method of compensating interference asymmetry in TDD multiple-input multiple-output (MIMO) orthogonal frequency division multiplexing (OFDM) system is proposed. The system makes the estimated interference at transmit-side be able to track the instantaneous receive-side interference dynamically. The proposed method maintains constant frame error rate (FER) by adopting adaptive modulation coding (AMC) and power loading. The final simulations have verified the effectiveness of the new method. 展开更多
关键词 time-division duplex (TDD) multiple-input multiple-output mimo orthogonal frequency divisionmultiplexing (OFDM) adaptive modulation coding (AMC) adaptive closed-loop feedback
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