针对直接变频接收机四相相移键控( QPSK) 信号的 IQ 不平衡问题,提出了一种角度统计的盲补偿方法。首先利用仿射坐标变换理论建立了实际的 IQ 信号与理想 IQ 信号的坐标旋转以及伸缩关系,然后通过坐标旋转的角度统计方法进行 IQ 不平衡...针对直接变频接收机四相相移键控( QPSK) 信号的 IQ 不平衡问题,提出了一种角度统计的盲补偿方法。首先利用仿射坐标变换理论建立了实际的 IQ 信号与理想 IQ 信号的坐标旋转以及伸缩关系,然后通过坐标旋转的角度统计方法进行 IQ 不平衡系数的估计,从而实现 QPSK 信号的 IQ 不平衡补偿。仿真实验表明,相比其他的 IQ 不平衡盲补偿算法,该方法在降低误码率( BER) 的同时,减少了计算复杂度。展开更多
The statistical properties of interacting fermions have been studied for various angular momentum with the inclusion of pairing interaction. The dependence of the critical temperature on angular momentum for several n...The statistical properties of interacting fermions have been studied for various angular momentum with the inclusion of pairing interaction. The dependence of the critical temperature on angular momentum for several nuclei, have been studied. The yrast energy as a function of angular momentum for 28Si and 24 Mg nuclei have been calculated up to 60.0 MeV of excitation energy. The computed limiting angular momenta are compared with the experimental results for ^26Al produced by ^12C+ 14N reaction. The relevant nuclear level densities for non-zero angular momentum have been computed for ^44Ti and ^136 Ba nuclei. The results are compared with their corresponding values obtained from the approximate formulas.展开更多
文摘针对直接变频接收机四相相移键控( QPSK) 信号的 IQ 不平衡问题,提出了一种角度统计的盲补偿方法。首先利用仿射坐标变换理论建立了实际的 IQ 信号与理想 IQ 信号的坐标旋转以及伸缩关系,然后通过坐标旋转的角度统计方法进行 IQ 不平衡系数的估计,从而实现 QPSK 信号的 IQ 不平衡补偿。仿真实验表明,相比其他的 IQ 不平衡盲补偿算法,该方法在降低误码率( BER) 的同时,减少了计算复杂度。
文摘The statistical properties of interacting fermions have been studied for various angular momentum with the inclusion of pairing interaction. The dependence of the critical temperature on angular momentum for several nuclei, have been studied. The yrast energy as a function of angular momentum for 28Si and 24 Mg nuclei have been calculated up to 60.0 MeV of excitation energy. The computed limiting angular momenta are compared with the experimental results for ^26Al produced by ^12C+ 14N reaction. The relevant nuclear level densities for non-zero angular momentum have been computed for ^44Ti and ^136 Ba nuclei. The results are compared with their corresponding values obtained from the approximate formulas.