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Improved scheme with cooperative diversity based on distributed space-time block coding
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作者 Du Na Xu Dazhuan 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2009年第3期463-469,共7页
An improved scheme with cooperative diversity based on distributed space-time block coding (WCD- DSTBC) is proposed, which effectively achieves diversity gains and improves the performance of the system by sharing s... An improved scheme with cooperative diversity based on distributed space-time block coding (WCD- DSTBC) is proposed, which effectively achieves diversity gains and improves the performance of the system by sharing some single-antenna users' antennas to form a virtual antenna array and combining with distributed spacetime block coding (DSTBC) mode. Then the relation between the system BER and the interuser BER for WCDDSTBC scheme is theoretically derived and the closed-form expression of BER for WCD-DSTBC system is obtained. The simulation results show that the proposed WCD-DSTBC scheme achieves distinct gains over the non-cooperative multi-carrier CDMA (MC-CDMA) system. When system BER is le-3 and interuser BER is le-3, about 2.5 dB gain can be gotten. When interuser channel state information (CSI) outgoes the users' individual CSI, about 3 dB gain is also achieved. 展开更多
关键词 multiple input multiple output cooperative diversity distributed space-time block coding multicarrier CDMA.
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Efficient spread space-time block coding scheme in multiple antenna systems
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作者 Qiu Ling Zheng Xiayu 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2006年第2期258-262,共5页
Space-time coding is an important technique that can improve transmission performance at fading environments in mobile communication systems. In this paper, we propose a novel diversity scheme using spread spacetime b... Space-time coding is an important technique that can improve transmission performance at fading environments in mobile communication systems. In this paper, we propose a novel diversity scheme using spread spacetime block coding (SSTBC) in multiple antenna systems. At the transmitter, the primitive data are serial to parallel converted to multiple data streams, and each stream is rotated in constellation. Then Walsh codes are used to spread each symbol to all antenna space in a space-time block. The signals received from all receiver antennas are combined with the maximum ratio combining (MRC), equalized with linear equalizer to eliminate the inter-code interference and finally demodulated to recover to transmit data by using the one-symbol maximum likelihood detector. The proposed scheme does not sacrifice the spectrum efficiency meanwhile maintains the transceiver with low complexity. Owing to the transmission symbols of different transmit antennas passing through all the spatial subchannels between transceiver antenna pairs, the system obtains the partial additional space diversity gain of all spatial paths. It is also shown that the diversity gain is better than the previous space-time block coding (STBC) schemes with full transmission rate. 展开更多
关键词 multiple antennas spread space-time block coding (SSTBC) diversity full transmission rate.
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Application of transmit diversity for improved robust watermarking 被引量:1
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作者 Sun Rui Sun Hong Yao Tianren 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2004年第2期163-170,共8页
Many common multimedia signal processing,including cropping,filtering,and perceptual coding,make watermark signal fading-like modification.A scheme that applies transmit diversity technique to improve robustness of di... Many common multimedia signal processing,including cropping,filtering,and perceptual coding,make watermark signal fading-like modification.A scheme that applies transmit diversity technique to improve robustness of digital watermarking is presented.First,the scheme decomposes the original image using wavelet pyramid algorithm and chooses the middle-frequency band for transmission channel that the watermark will be embedded into.Then the watermark is pseudo-randomly permuted.The scheme makes use of space-time coding and differential detection technique to embed and extract watermark.The extracting process has access to neither the original image nor channel state information.Experimental results demonstrate that the scheme improves the performance of robust watermarking. 展开更多
关键词 digital watermark transmit diversity space-time coding differential detection wavelet transform.
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空时码 被引量:12
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作者 张平 陶小峰 +1 位作者 王卫东 雷鸣 《电子学报》 EI CAS CSCD 北大核心 2000年第z1期110-113,共4页
提高频率利用率一直是移动通信系统中的研究热点 ,而近年来提出的空时码又是其关键技术之一 .从当前的研究情况来看 ,空时码技术主要分为以下两大类 :一是分层空时码 (LST) ;二是基于发射分集的空时分组码和空时格码 .由于空时码具有良... 提高频率利用率一直是移动通信系统中的研究热点 ,而近年来提出的空时码又是其关键技术之一 .从当前的研究情况来看 ,空时码技术主要分为以下两大类 :一是分层空时码 (LST) ;二是基于发射分集的空时分组码和空时格码 .由于空时码具有良好的频带利用率及性能 ,3GPP已将空时分组码作为一可选方案列在所提规范之中 .相信在不远的将来 ,空时码必将广泛应用于未来的移动通信系统 . 展开更多
关键词 空时码 分层空时码(LST) 发射分集
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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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