A novel fast despreading scheme for M-ary Multi-Carrier Code-Division Multiple Access (MC-CDMA) system is proposed based on cyclic spreading codes and pre-equalizer. In the transmitter, the M spreading codes of each u...A novel fast despreading scheme for M-ary Multi-Carrier Code-Division Multiple Access (MC-CDMA) system is proposed based on cyclic spreading codes and pre-equalizer. In the transmitter, the M spreading codes of each user are generated by circularly shifting the prototype spreading code. A feedback pre-equalizer is employed to process the M-ary MC- CDMA signal before transmitted. The received signal is multiplied by the Inverse Discrete Fourier Transform (IDFT) result of the mirror image code of the prototype spreading code, and then demodulated by Orthogonal Frequency-Division Multiplexing (OFDM) demodulator. Compared with the conventional M-ary MC-CDMA receiver, the proposed scheme increases bandwidth efficiency, meanwhile, it achieves M-ary despread spectrum and multi-carrier demodulation, which reduces computation complexity remarkably.展开更多
提出一种单载波二维码分与频分多址(single carrier two dimensional code and frequency division multiple access,SC-2DCFDMA)系统,借助时频二维扩频矩阵解决普通单载波码分与频分多址(single carrier code and frequency division m...提出一种单载波二维码分与频分多址(single carrier two dimensional code and frequency division multiple access,SC-2DCFDMA)系统,借助时频二维扩频矩阵解决普通单载波码分与频分多址(single carrier code and frequency division multiple access,SC-CFDMA)系统中扩频因子与子带宽度之间的矛盾;构建了SC-2DCFDMA系统发送端与接收端的数学模型;分析了其在加性高斯白噪声信道和频率选择性信道下的理论误码率。仿真结果表明,理论与仿真误码率曲线吻合;在相同的扩频因子条件下,SC-2DCFDMA系统具有比SC-CFDMA系统更窄的用户子带宽度和更优的误码率性能;在多用户场景下,虽然信道的频率选择性会造成频域扩频码的正交性损失,但这种损失可由时域扩频码的正交性来弥补,从而使得SC-2DCFDMA系统的多用户性能优于SC-CFDMA系统。展开更多
基金Supported by the National Natural Science Foundation of China (No.60172029).
文摘A novel fast despreading scheme for M-ary Multi-Carrier Code-Division Multiple Access (MC-CDMA) system is proposed based on cyclic spreading codes and pre-equalizer. In the transmitter, the M spreading codes of each user are generated by circularly shifting the prototype spreading code. A feedback pre-equalizer is employed to process the M-ary MC- CDMA signal before transmitted. The received signal is multiplied by the Inverse Discrete Fourier Transform (IDFT) result of the mirror image code of the prototype spreading code, and then demodulated by Orthogonal Frequency-Division Multiplexing (OFDM) demodulator. Compared with the conventional M-ary MC-CDMA receiver, the proposed scheme increases bandwidth efficiency, meanwhile, it achieves M-ary despread spectrum and multi-carrier demodulation, which reduces computation complexity remarkably.
文摘提出一种单载波二维码分与频分多址(single carrier two dimensional code and frequency division multiple access,SC-2DCFDMA)系统,借助时频二维扩频矩阵解决普通单载波码分与频分多址(single carrier code and frequency division multiple access,SC-CFDMA)系统中扩频因子与子带宽度之间的矛盾;构建了SC-2DCFDMA系统发送端与接收端的数学模型;分析了其在加性高斯白噪声信道和频率选择性信道下的理论误码率。仿真结果表明,理论与仿真误码率曲线吻合;在相同的扩频因子条件下,SC-2DCFDMA系统具有比SC-CFDMA系统更窄的用户子带宽度和更优的误码率性能;在多用户场景下,虽然信道的频率选择性会造成频域扩频码的正交性损失,但这种损失可由时域扩频码的正交性来弥补,从而使得SC-2DCFDMA系统的多用户性能优于SC-CFDMA系统。