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一种基于直扩OFDM的分层空时编码结构 被引量:3
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作者 李勇朝 廖桂生 +1 位作者 王峰 毛磊 《西北大学学报(自然科学版)》 CAS CSCD 北大核心 2005年第3期287-292,共6页
目的提高无线宽带下行传输中分层空时编码的性能。方法提出一种基于直扩OFDM的分层空时编码结构,利用一组正交扩频序列对每路发射信号进行扩频,接收机通过解扩区分各路发射信号。结果新结构有效抑制了共信道干扰,并采用RAKE接收以提高... 目的提高无线宽带下行传输中分层空时编码的性能。方法提出一种基于直扩OFDM的分层空时编码结构,利用一组正交扩频序列对每路发射信号进行扩频,接收机通过解扩区分各路发射信号。结果新结构有效抑制了共信道干扰,并采用RAKE接收以提高系统的性能;新结构保持了分层空时编码高传输率的优点,并可应用于无线宽带下行传输。结论仿真结果表明,新结构优于基于迫零算法分层空时编码的性能。信道估计、多用户检测,以及在时间选择性衰落下的问题,是今后进一步研究的方向。 展开更多
关键词 分层空时编码 直接序列扩频 正交频分复用
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几种空时码容量对比 被引量:1
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作者 张碧军 朱光喜 《计算机科学》 CSCD 北大核心 2006年第8期22-24,31,共4页
贝尔实验室提出的分层空时码(layered space-ti me code,LSTC)主要基于空分复用思想,它的主要目的是提高系统频谱效率;而其它空时码(space-ti me code,STC),如空时分组码(space-ti me block code,STBC)、空时格码(space-ti me trellis c... 贝尔实验室提出的分层空时码(layered space-ti me code,LSTC)主要基于空分复用思想,它的主要目的是提高系统频谱效率;而其它空时码(space-ti me code,STC),如空时分组码(space-ti me block code,STBC)、空时格码(space-ti me trellis code,STTC)等主要基于发射分集。它们主要利用空间分集带来的增益,包括分集增益和编码增益来对抗无线信道的各种衰落。本文从信道容量角度评估各种空时编码的性能,同时将其和相同收发天线数下多输入输出(Multiple input multiple output,MI MO)系统的信道容量进行对比。 展开更多
关键词 分层空时码 空时码 信道容量 多输入多输出
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Optimal MMSE successive interference cancellation in group-wise STBC MIMO systems
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作者 Fan Xun Zhang Haibin Luo Hanwen Huang Jianguo 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2006年第1期85-90,共6页
An optimal minimum mean square error successive interference cancellation (OMMSE SIC) scheme for Groupwise space-time block coding (G-STBC) multiple-input multiple-output (MIMO) systems is presented. In such a s... An optimal minimum mean square error successive interference cancellation (OMMSE SIC) scheme for Groupwise space-time block coding (G-STBC) multiple-input multiple-output (MIMO) systems is presented. In such a system, transmit antennas are partitioned into several STBC encoding groups and each group transmits independent data stream which is individually STBC encoded. On the receiver side, by exploring the temporal constraint provided by STBC, an equivalent channel model similar to the one in standard vertical Bell laboratories layered space-time (V-BLAST) systems is generated. Then OMMSE SIC algorithm is performed to detect all the transmitted information. Simulation compares the proposed scheme with non-ordering MMSE SIC scheme and the corresponding equal data rate scheme in V-BLAST systems with the same receive antennas' number. Result shows that the proposed scheme has better performance than non-ordering MMSE SIC scheme and by introducing more transmit antennas and adopting the OMMSE SIC scheme, better performance also can be achieved than corresponding V-BLAST systems. 展开更多
关键词 multi-input MULTI-OUTPUT vertical Bell laboratories layered space-time space-time block coding minimum mean square error
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Symbols detection for frequency-selective V-BLAST OFDM systems
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作者 WuXiaojun LiXing WangJilong 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2005年第2期418-425,共8页
As the combining form of the orthogonal frequency-division multiplexing (OFDM) technique and the vertical Bell Labs layered space-time (V-BLAST) architecture, the V-BLAST OFDM system can better meet the demand of next... As the combining form of the orthogonal frequency-division multiplexing (OFDM) technique and the vertical Bell Labs layered space-time (V-BLAST) architecture, the V-BLAST OFDM system can better meet the demand of next-generation (NextG) broadband mobile wireless multimedia communications. The symbols detection problem of the V-BLAST OFDM system is investigated under the frequency-selective fading environment. The joint space-frequency demultiplexing operation is proposed in the V-BLAST OFDM system. Successively, one novel half-rate rotational invariance joint space-frequency coding scheme for the V-BLAST OFDM system is proposed. By elegantly exploiting the above rotational invariance property, we derive one direct symbols detection scheme without knowing channels state information (CSI) for the frequency-selective V-BLAST OFDM system. Extensive simulation results demonstrate the validity of the novel half-rate rotational invariance joint space-frequency coding scheme and the performance of the direct symbols detection scheme. 展开更多
关键词 orthogonal frequency-division multiplexing vertical Bell Labs layered space-time architecture symbols detection frequency-selective fading joint space-frequency demultiplexing rotational invariance joint space-frequency coding.
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