论文标题
在CFO和智商失衡的情况下,半盲的多源SIMO GFDM系统
A Semi-Blind Multiuser SIMO GFDM System in the Presence of CFOs and IQ Imbalances
论文作者
论文摘要
在本文中,我们研究了在存在载体频率偏移(CFOS)和相位/相位/二次相(IQ)失衡的情况下,在存在载体频率偏移(CFOS)的情况下进行多源单输入频率分发(SIMO)广义频部多路复用(GFDM)系统的公开主题。提出了多个通道,CFO和智商失衡的低复杂性半盲估计方案。通过利用子空间方法,首先将与U用户相对应的CFO和渠道分为U组。对于每个单独的用户,CFO是通过最小化最小的特征值来提取的,其相应的特征向量被用来盲目估算频道。智商不平衡参数与通道歧义共同估计,很少有飞行员。所提出的方案对于更广泛的接收天线号范围是可行的,并且对子签和子载体的分配方案,调制类型,环状前缀长度以及每个GFDM符号的子符号没有任何约束。仿真结果表明,所提出的方案在位错误率,中断概率,CFO估计的平均值,通道和智商不平衡估计方面显着优于现有方法,而频谱效率较高,计算复杂性较低。 CRAMER-RAO下限被得出以验证所提出的方案的有效性,该方案显示出接近模拟结果。
In this paper, we investigate an open topic of a multiuser single-input-multiple-output (SIMO) generalized frequency division multiplexing (GFDM) system in the presence of carrier frequency offsets (CFOs) and in-phase/quadrature-phase (IQ) imbalances. A low-complexity semi-blind joint estimation scheme of multiple channels, CFOs and IQ imbalances is proposed. By utilizing the subspace approach, CFOs and channels corresponding to U users are first separated into U groups. For each individual user, CFO is extracted by minimizing the smallest eigenvalue whose corresponding eigenvector is utilized to estimate channel blindly. The IQ imbalance parameters are estimated jointly with channel ambiguities by very few pilots. The proposed scheme is feasible for a wider range of receive antennas number and has no constraints on the assignment scheme of subsymbols and subcarriers, modulation type, cyclic prefix length and the number of subsymbols per GFDM symbol. Simulation results show that the proposed scheme significantly outperforms the existing methods in terms of bit error rate, outage probability, mean-square-errors of CFO estimation, channel and IQ imbalance estimation, while at much higher spectral efficiency and lower computational complexity. The Cramer-Rao lower bound is derived to verify the effectiveness of the proposed scheme, which is shown to be close to simulation results.