广义线性结构广泛用于解决共平台系统中同相/正交相位(in-phase/quadrature-phase,IQ)不平衡引起的自干扰镜像信号残留问题。由于在共轭项维度上的拓展,输入信号间的相关性使得用于实现权值向量自适应更新的广义线性复数最小均方(widely...广义线性结构广泛用于解决共平台系统中同相/正交相位(in-phase/quadrature-phase,IQ)不平衡引起的自干扰镜像信号残留问题。由于在共轭项维度上的拓展,输入信号间的相关性使得用于实现权值向量自适应更新的广义线性复数最小均方(widely linear complex least mean square,WLCLMS)算法出现明显的收敛速度下降。针对这一问题,本文提出了一种二维正交化方法,通过特征值分解实现输入信号在样本延时以及共轭项两个维度上的去相关。同时建立了包括格形预测器、基于梯度的白化器,以及数字对消器三级结构的自适应二维正交化WLCLMS模型,实现了时变环境中自干扰信号的实时跟踪。仿真结果表明,该方法在有效提升收敛速度的同时,有着稳定的稳态误差性能,并且针对系统采样率、滤波器阶数、IQ不平衡量的变化具有良好的鲁棒性。展开更多
An efficient compensation scheme combining a timedomain Gaussian elimination(GE) channel estimator and a frequency-domain GE equalizer is proposed for orthogonal frequency division multiplexing(OFDM) systems with ...An efficient compensation scheme combining a timedomain Gaussian elimination(GE) channel estimator and a frequency-domain GE equalizer is proposed for orthogonal frequency division multiplexing(OFDM) systems with frequencydependent in-phase and quadrature-phase(IQ) imbalances at both transmitter and receiver.Compared with the traditional least square and least mean square compensation schemes,the proposed compensation scheme achieves the same bit error rate as the ideal IQ branches by using only two training OFDM symbols instead of about 20 OFDM symbols.展开更多
针对正交频分复用(orthogonal frequency division multiplexing,OFDM)系统在时间—频率双选择性信道环境中由同相正交(in-phase and quadrature-phase,IQ)支路不平衡耦合多径时变信道导致的复杂子载波间干扰问题,提出了一种基于球形译...针对正交频分复用(orthogonal frequency division multiplexing,OFDM)系统在时间—频率双选择性信道环境中由同相正交(in-phase and quadrature-phase,IQ)支路不平衡耦合多径时变信道导致的复杂子载波间干扰问题,提出了一种基于球形译码算法和并行干扰消除算法的IQ不平衡补偿方法。该方法通过对系统模型进行简化与分块处理,采用球形译码算法消除块内的子载波间干扰,采用并行干扰消除算法抑制块间干扰,并进行交替迭代运算。仿真结果表明,提出的算法在时间—频率双选择性信道环境下具有良好的IQ不平衡补偿性能。展开更多
文摘广义线性结构广泛用于解决共平台系统中同相/正交相位(in-phase/quadrature-phase,IQ)不平衡引起的自干扰镜像信号残留问题。由于在共轭项维度上的拓展,输入信号间的相关性使得用于实现权值向量自适应更新的广义线性复数最小均方(widely linear complex least mean square,WLCLMS)算法出现明显的收敛速度下降。针对这一问题,本文提出了一种二维正交化方法,通过特征值分解实现输入信号在样本延时以及共轭项两个维度上的去相关。同时建立了包括格形预测器、基于梯度的白化器,以及数字对消器三级结构的自适应二维正交化WLCLMS模型,实现了时变环境中自干扰信号的实时跟踪。仿真结果表明,该方法在有效提升收敛速度的同时,有着稳定的稳态误差性能,并且针对系统采样率、滤波器阶数、IQ不平衡量的变化具有良好的鲁棒性。
基金supported by the National Natural Science Fundation of China(6127123061172073)the Open Research Fund of National Mobile Communications Research Lab(2010D13)
文摘An efficient compensation scheme combining a timedomain Gaussian elimination(GE) channel estimator and a frequency-domain GE equalizer is proposed for orthogonal frequency division multiplexing(OFDM) systems with frequencydependent in-phase and quadrature-phase(IQ) imbalances at both transmitter and receiver.Compared with the traditional least square and least mean square compensation schemes,the proposed compensation scheme achieves the same bit error rate as the ideal IQ branches by using only two training OFDM symbols instead of about 20 OFDM symbols.
文摘针对正交频分复用(orthogonal frequency division multiplexing,OFDM)系统在时间—频率双选择性信道环境中由同相正交(in-phase and quadrature-phase,IQ)支路不平衡耦合多径时变信道导致的复杂子载波间干扰问题,提出了一种基于球形译码算法和并行干扰消除算法的IQ不平衡补偿方法。该方法通过对系统模型进行简化与分块处理,采用球形译码算法消除块内的子载波间干扰,采用并行干扰消除算法抑制块间干扰,并进行交替迭代运算。仿真结果表明,提出的算法在时间—频率双选择性信道环境下具有良好的IQ不平衡补偿性能。