In this paper, a new observation equation of non-Gaussian frequency selective fading Bell Labs layered space time (BLAST) architecture system is proposed, which is used for frequency selective fading channels and no...In this paper, a new observation equation of non-Gaussian frequency selective fading Bell Labs layered space time (BLAST) architecture system is proposed, which is used for frequency selective fading channels and non-Gaussian noise in an application environment of BLAST system. With othogonal matrix triangularization (QR decomposition) of the channel matrix, the static observation equation of frequency selective fading BLAST system is transformed into a dynamic state space model, and then the particle filter is used for space-time layered detection. Making the full use of the finite alphabet of the digital modulation communication signal, the optimal proposal distribution can be chosen to produce particle and update the weight. Incorporated with current method of reducing error propagation, a new space-time layered detection algorithm is proposed. Simulation result shows the validity of the proposed algorithm.展开更多
针对Turbo编码频选慢衰落MIMO信道,提出基于滑窗式概率数据辅助(Probabilistic Data Association)的软输出判决反馈均衡和软输入软输出Turbo信道解码器间迭代处理的Turbo均衡算法。充分利用已获得的信息,实现信道均衡与信道解码的迭代更...针对Turbo编码频选慢衰落MIMO信道,提出基于滑窗式概率数据辅助(Probabilistic Data Association)的软输出判决反馈均衡和软输入软输出Turbo信道解码器间迭代处理的Turbo均衡算法。充分利用已获得的信息,实现信道均衡与信道解码的迭代更新,克服传统判决反馈均衡器误差传播的缺陷。仿真表明,该系统经3次迭代就可获得较为满意的符号间干扰消除效果。展开更多
针对频率选择性衰落信道下2发1收STBC-SC-FDE系统收发两端的信号编码与处理结构,应用系统的频率域输入-输出模型,设计了一种最小二乘信道频率响应(Channel frequency response,CFR)估计算法。对算法均方误差的分析表明,采用Chu序列作为...针对频率选择性衰落信道下2发1收STBC-SC-FDE系统收发两端的信号编码与处理结构,应用系统的频率域输入-输出模型,设计了一种最小二乘信道频率响应(Channel frequency response,CFR)估计算法。对算法均方误差的分析表明,采用Chu序列作为最优训练序列不仅能够实现CFR估计的最小均方误差,而且能保证系统具有比较低的峰均功率比(Peak-to-average power ratio,PA/PR)。该算法相比那些先估计信道时域响应(Channel impulse response,CIR)再转换为CFR的方法能够节省更多的计算资源。最后Monte Carlo仿真验证了该算法的性能。展开更多
文摘In this paper, a new observation equation of non-Gaussian frequency selective fading Bell Labs layered space time (BLAST) architecture system is proposed, which is used for frequency selective fading channels and non-Gaussian noise in an application environment of BLAST system. With othogonal matrix triangularization (QR decomposition) of the channel matrix, the static observation equation of frequency selective fading BLAST system is transformed into a dynamic state space model, and then the particle filter is used for space-time layered detection. Making the full use of the finite alphabet of the digital modulation communication signal, the optimal proposal distribution can be chosen to produce particle and update the weight. Incorporated with current method of reducing error propagation, a new space-time layered detection algorithm is proposed. Simulation result shows the validity of the proposed algorithm.
文摘针对Turbo编码频选慢衰落MIMO信道,提出基于滑窗式概率数据辅助(Probabilistic Data Association)的软输出判决反馈均衡和软输入软输出Turbo信道解码器间迭代处理的Turbo均衡算法。充分利用已获得的信息,实现信道均衡与信道解码的迭代更新,克服传统判决反馈均衡器误差传播的缺陷。仿真表明,该系统经3次迭代就可获得较为满意的符号间干扰消除效果。
文摘针对频率选择性衰落信道下2发1收STBC-SC-FDE系统收发两端的信号编码与处理结构,应用系统的频率域输入-输出模型,设计了一种最小二乘信道频率响应(Channel frequency response,CFR)估计算法。对算法均方误差的分析表明,采用Chu序列作为最优训练序列不仅能够实现CFR估计的最小均方误差,而且能保证系统具有比较低的峰均功率比(Peak-to-average power ratio,PA/PR)。该算法相比那些先估计信道时域响应(Channel impulse response,CIR)再转换为CFR的方法能够节省更多的计算资源。最后Monte Carlo仿真验证了该算法的性能。