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広帯域無線通信における時空間符号化伝送のためのサブバンドアダプティブアレーに関する研究

机译:宽带无线通信中用于时空编码传输的子带自适应阵列的研究

摘要

Recently, many works have been accomplished on transmit diversity for a high-speed datatransmission through the wireless channel. A Multiple Input Multiple Output (MIMO)system which employs multiple antennas at transmitter and receiver has been shown to beable to improve transmission data rate and capacity of the system. When the channel stateinformation (CSI) is unknown at the transmitter, an multiple input single output (MISO)system combined with the transmit diversity of space time coding modulation known asspace-time block coding (STBC) has taken a great attention. However, the performanceof STBC is deteriorated under frequency selective fading due to inter symbol interference(ISI). An STBC employing tapped delay line adaptive array (STBC-TDLAA) is knownas a solution for this problem since it utilizes the delayed signals to enhance the desiredsignal instead of excluding them as interferences. However, this method requires a largecomputational load compared to the conventional adaptive array system.In this dissertation, assuming the CSI is unknown at the transmitter, and at thereceiver the CSI is exploited from pilot signal, we propose an MIMO transmission schemeusing STBC with adoptive subband adaptive array (SBAA) processing, where the receivedsignal is converted into the frequency-domain and adaptive processing is done in eachsubband. A novel construction of SBAA is introduced to process received signal based onSTBC. In addition, to improve the performance of STBC-SBAA, single carrier cyclic prefix(CP) is also introduced. Simulation results demonstrate that the proposed scheme hasa better performance compare to the conventional STBC, and has a better performanceand less computational load compare to STBC-TDLAA.Furthermore, we extend the proposed method to uplink multi-user space-time blockcoding (STBC) code division multiple access (CDMA) over a frequency selective fadingchannel. The proposed scheme utilizes CDMA with STBC and a receive array antennawith SBAA processing at the receiver. The received signal is converted into the frequencydomain before de-spreading and adaptive processing is performed in each subband for eachuser. In order to reduce the effect of ISI and multiple access interference (MAI), a novelSBAA construction is introduced to process STBC CDMA signals. To improve the performanceof the proposed scheme, we evaluate STBC-SBAA using spreading codes cyclicprefix (CP). Simulation results demonstrate an improved performance of the proposedsystem for single and multiuser environments compared to the conventional techniques.Moreover, we also evaluate the STBC-SBAA for the multi-code multi-rate CDMA system.Finally, we present a modified spatio-temporal adaptive array for multiuser STBC(Modified STBC-STAA) transmission in frequency selective fading channel with the presenceof co-channel interferences (CCIs). This method based on the transversal filteradaptive array performing the joint interference suppression and equalization to overcomethe problem of one symbol delay, namely codes synchronization error. The ModifiedSTBC-STAA can maximize the transmission efficiency by incorporating the receive signalcomponent for both non-conjugated and the complex conjugated version of desired signalin the receive signal, which is not only dispersed in space, but also in the time. Furthermore,Modified STBC-STAA overcomes the multiuser timing errors by re-aligning theasynchronous multiuser signal to undergo the synchronous joint interference suppressionand equalization. Simulation results show that both our proposed scheme has a betterperformance than the conventional STBC-STAA for frequency selective fading channel.
机译:近来,关于通过无线信道进行高速数据传输的传输分集已经完成了许多工作。已显示在发射器和接收器处使用多个天线的多输入多输出(MIMO)系统能够提高传输数据速率和系统容量。当发射机处的信道状态信息(CSI)未知时,多输入单输出(MISO)系统与称为空时分组编码(STBC)的空时编码调制的发射分集相结合。然而,由于符号间干扰(ISI),在频率选择性衰落下,STBC的性能下降。已知采用抽头延迟线自适应阵列(STBC-TDLAA)的STBC是该问题的解决方案,因为它利用延迟的信号来增强期望的信号而不是将其排除为干扰。然而,与传统的自适应阵列系统相比,该方法需要较大的计算量。本文假设发射机中的CSI是未知的,并且在接收机中从导频信号中利用了CSI,我们提出了一种采用STBC和过继子带的MIMO传输方案。自适应阵列(SBAA)处理,其中将接收到的信号转换为频域,并在每个子带中进行自适应处理。介绍了一种新颖的SBAA结构,用于基于STBC处理接收信号。另外,为了提高STBC-SBAA的性能,还引入了单载波循环前缀(CP)。仿真结果表明,与传统的STBC相比,该方案具有更好的性能,与STBC-TDLAA相比,具有更好的性能和更少的计算量。此外,我们将该方法扩展到上行多用户空时分组编码(STBC)频率选择性衰落信道上的分频多址(CDMA)。所提出的方案利用具有STBC的CDMA和在接收机处具有SBAA处理的接收阵列天线。在对每个用户的每个子带中进行解扩和自适应处理之前,将接收到的信号转换到频域。为了减小ISI和多址干扰(MAI)的影响,引入了新颖的SBAA构造来处理STBC CDMA信号。为了提高所提出方案的性能,我们使用扩展码循环前缀(CP)评估STBC-SBAA。仿真结果表明,与传统技术相比,该系统在单用户和多用户环境下的性能有所提高。此外,我们还对多码多速率CDMA系统的STBC-SBAA进行了评估。最后,我们提出了一种改进的时空自适应在存在同信道干扰(CCI)的频率选择性衰落信道中,用于多用户STBC(Modified STBC-STAA)传输的阵列。该方法基于横向滤波器自适应阵列进行联合干扰抑制和均衡,克服了一个符号延迟即编码同步误差的问题。 ModifiedSTBC-STAA可以通过将所需信号的非共轭和复共轭形式的接收信号分量合并到接收信号中来最大化传输效率,该接收信号不仅分散在空间中,而且分散在时间上。此外,修改后的STBC-STAA通过重新对齐异步多用户信号以进行同步联合干扰抑制和均衡,克服了多用户定时误差。仿真结果表明,对于频率选择性衰落信道,我们提出的两种方案均具有比常规STBC-STAA更好的性能。

著录项

  • 作者

    Nordin Bin Ramli;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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