In this paper, a new partial transmit sequence(PTS)scheme with low computational complexity is proposed for the problems of high computational complexity in the conventional PTS method. By analyzing the relationship...In this paper, a new partial transmit sequence(PTS)scheme with low computational complexity is proposed for the problems of high computational complexity in the conventional PTS method. By analyzing the relationship of candidate sequences in the PTS method under the interleaved partition method, it has been discovered that some candidate sequences generated by phase factor sequences have the same peak average power ratio(PAPR). Hence, phase factor sequences can be optimized to reduce their searching times. Then, the computational process of generating candidate sequences can be simplified by improving the utilization of data and minimizing the calculations of complex multiplication. The performance analysis shows that, compared with the conventional PTS scheme, the proposed approach significantly decreases the computational complexity and has no loss of PAPR performance.展开更多
为了降低多输入多输出正交频分复用(multiple input multiple output orthogonal frequency division multiplexing,MIMO-OFDM)系统中传统部分传输序列(partial transmit sequence,PTS)算法的计算复杂度,提出了联合时域和空间域信号处...为了降低多输入多输出正交频分复用(multiple input multiple output orthogonal frequency division multiplexing,MIMO-OFDM)系统中传统部分传输序列(partial transmit sequence,PTS)算法的计算复杂度,提出了联合时域和空间域信号处理的改进PTS算法。在时域信号处理部分,通过信号子块循环移位实现备选序列的增加;在空间域部分,利用天线间信号子块交换实现峰均功率比(peak to average power ratio,PAPR)抑制。同时在接收端,利用子块相位旋转引起的相位差异,本方法通过比较接收信号与星座点的距离,可以实现信号的盲检测,从而有效提高MIMO-OFDM系统的频谱利用率。仿真结果表明,提出的方法能有效地抑制MIMO-OFDM信号的PAPR,而且明显降低了传统PTS算法的计算复杂度,同时可获得跟传统PTS方法已知边带副信息时相似的比特误码率(bit error rate,BER)性能。展开更多
为了降低正交频分复用(orthogonal frequency division multiplexing,OFDM)信号的峰均功率比(peak to average power ratio,PAPR),提高系统的误比特率(bit error rate,BER)性能,提出了一种结合时域信号分割和部分子块循环移位的低复杂...为了降低正交频分复用(orthogonal frequency division multiplexing,OFDM)信号的峰均功率比(peak to average power ratio,PAPR),提高系统的误比特率(bit error rate,BER)性能,提出了一种结合时域信号分割和部分子块循环移位的低复杂度部分传输序列(partial transmit sequence,PTS)算法,发送端仅需要一次快速傅里叶反变换(inverse fast fourier transform,IFFT)运算即可获得多个备选序列,接收端通过比较反向旋转序列与最近星座点的距离来恢复时域循环因子,实现了信号的盲检测。采用了两种不同的最佳序列选择准则:最小PAPR和最大相关性准则(cross correlation,CORR),并仿真分析了系统的PAPR性能和BER性能。结果表明,所提算法有效地抑制了OFDM信号的PAPR,提高了系统的BER性能,与传统PTS和选择性映射算法相比,明显降低了计算复杂度。展开更多
基金supported by the National Natural Science Foundation of China(6167309361370152)the Science and Technology Project of Shenyang(F16-205-1-01)
文摘In this paper, a new partial transmit sequence(PTS)scheme with low computational complexity is proposed for the problems of high computational complexity in the conventional PTS method. By analyzing the relationship of candidate sequences in the PTS method under the interleaved partition method, it has been discovered that some candidate sequences generated by phase factor sequences have the same peak average power ratio(PAPR). Hence, phase factor sequences can be optimized to reduce their searching times. Then, the computational process of generating candidate sequences can be simplified by improving the utilization of data and minimizing the calculations of complex multiplication. The performance analysis shows that, compared with the conventional PTS scheme, the proposed approach significantly decreases the computational complexity and has no loss of PAPR performance.
文摘为了降低多输入多输出正交频分复用(multiple input multiple output orthogonal frequency division multiplexing,MIMO-OFDM)系统中传统部分传输序列(partial transmit sequence,PTS)算法的计算复杂度,提出了联合时域和空间域信号处理的改进PTS算法。在时域信号处理部分,通过信号子块循环移位实现备选序列的增加;在空间域部分,利用天线间信号子块交换实现峰均功率比(peak to average power ratio,PAPR)抑制。同时在接收端,利用子块相位旋转引起的相位差异,本方法通过比较接收信号与星座点的距离,可以实现信号的盲检测,从而有效提高MIMO-OFDM系统的频谱利用率。仿真结果表明,提出的方法能有效地抑制MIMO-OFDM信号的PAPR,而且明显降低了传统PTS算法的计算复杂度,同时可获得跟传统PTS方法已知边带副信息时相似的比特误码率(bit error rate,BER)性能。
文摘为了降低正交频分复用(orthogonal frequency division multiplexing,OFDM)信号的峰均功率比(peak to average power ratio,PAPR),提高系统的误比特率(bit error rate,BER)性能,提出了一种结合时域信号分割和部分子块循环移位的低复杂度部分传输序列(partial transmit sequence,PTS)算法,发送端仅需要一次快速傅里叶反变换(inverse fast fourier transform,IFFT)运算即可获得多个备选序列,接收端通过比较反向旋转序列与最近星座点的距离来恢复时域循环因子,实现了信号的盲检测。采用了两种不同的最佳序列选择准则:最小PAPR和最大相关性准则(cross correlation,CORR),并仿真分析了系统的PAPR性能和BER性能。结果表明,所提算法有效地抑制了OFDM信号的PAPR,提高了系统的BER性能,与传统PTS和选择性映射算法相比,明显降低了计算复杂度。