A robust interference canceller for Multi-Carrier Code Division Multiple Access(MC-CDMA) using Orthogonal Frequency Division Multiplexing (OFDM) in Rayleigh fading isproposed. This interference canceller is robust in ...A robust interference canceller for Multi-Carrier Code Division Multiple Access(MC-CDMA) using Orthogonal Frequency Division Multiplexing (OFDM) in Rayleigh fading isproposed. This interference canceller is robust in the sense that it cancels Inter-Carriers Inter-ference (ICI) and is suitable for use in dispersive channels. To come up the effects of the signaldispersion, Doppler shifts and delay spreads on the performance of MC-CDMA systems over mo-bile fading channels, this interference canceller exploits the merit of the orthogonal signaling andpilot signals to evaluate the channel parameters. This interface canceller is well suited to work initerative turbo interference cancellation.展开更多
提出将逆变器的非线性负载畸变控制问题转化为动态冲击性不平衡负载的畸变控制问题,将用于不平衡控制的改进型双闭环复合控制模型引入辅助供电系统逆变器控制方式中。通过信号延迟对消(delay signal cancellation,DSC)技术分离电压的正...提出将逆变器的非线性负载畸变控制问题转化为动态冲击性不平衡负载的畸变控制问题,将用于不平衡控制的改进型双闭环复合控制模型引入辅助供电系统逆变器控制方式中。通过信号延迟对消(delay signal cancellation,DSC)技术分离电压的正负序分量,并分别跟踪补偿,改善输出电压波形。基于MATLAB/Simulink及dSPACE半实物仿真平台搭建的某车型辅助逆变器模型,验证了所引入的改进型控制方法对三相整流器负载和单相不平衡负载下的逆变器输出电压畸变均有显著改善,拓展了基于DCS的改进型双闭环复合控制方法的应用范围。展开更多
基金the National Natural Science Foundation of China(No.60172048)
文摘A robust interference canceller for Multi-Carrier Code Division Multiple Access(MC-CDMA) using Orthogonal Frequency Division Multiplexing (OFDM) in Rayleigh fading isproposed. This interference canceller is robust in the sense that it cancels Inter-Carriers Inter-ference (ICI) and is suitable for use in dispersive channels. To come up the effects of the signaldispersion, Doppler shifts and delay spreads on the performance of MC-CDMA systems over mo-bile fading channels, this interference canceller exploits the merit of the orthogonal signaling andpilot signals to evaluate the channel parameters. This interface canceller is well suited to work initerative turbo interference cancellation.
文摘提出将逆变器的非线性负载畸变控制问题转化为动态冲击性不平衡负载的畸变控制问题,将用于不平衡控制的改进型双闭环复合控制模型引入辅助供电系统逆变器控制方式中。通过信号延迟对消(delay signal cancellation,DSC)技术分离电压的正负序分量,并分别跟踪补偿,改善输出电压波形。基于MATLAB/Simulink及dSPACE半实物仿真平台搭建的某车型辅助逆变器模型,验证了所引入的改进型控制方法对三相整流器负载和单相不平衡负载下的逆变器输出电压畸变均有显著改善,拓展了基于DCS的改进型双闭环复合控制方法的应用范围。