In this paper,we design a spatial modulation based orthogonal time frequency space(SMOTFS)system to achieve improved transmission reliability and meet the high transmission rate and highspeed demands of future mobile ...In this paper,we design a spatial modulation based orthogonal time frequency space(SMOTFS)system to achieve improved transmission reliability and meet the high transmission rate and highspeed demands of future mobile communications,which fully utilizes the characteristics of spatial modulation(SM)and orthogonal time frequency space(OTFS)transmission.The detailed system design and signal processing of the SM-OTFS system have been presented.The closed-form expressions of the average symbol error rate(ASER)and average bit error rate(ABER)of the SM-OTFS system have been derived over the delay-Doppler channel with the help of the union bounding technique and moment-generating function(MGF).Meanwhile,the system complexity has been evaluated.Numerical results verify the correctness of the theoretical ASER and ABER analysis of the SM-OTFS system in the high signal-to-noise ratio(SNR)regions and also show that the SM-OTFS system outperforms the traditional SM based orthogonal frequency division multiplexing(SM-OFDM)system with limited complexity increase under mobile conditions,especially in high mobility scenarios.展开更多
针对传统非正弦时域正交调制(Nonsinusoidal Orthogonal Modulation in Time Domain,NOTDM)系统多址复用容量有限的问题,提出一种基于正交或准正交序列的非正弦时域正交编码调制方法。给出了系统的调制模型和数学表达式,理论推导了调制...针对传统非正弦时域正交调制(Nonsinusoidal Orthogonal Modulation in Time Domain,NOTDM)系统多址复用容量有限的问题,提出一种基于正交或准正交序列的非正弦时域正交编码调制方法。给出了系统的调制模型和数学表达式,理论推导了调制信号的功率谱表达式并仿真分析了采用不同编码的调制信号的功率谱。理论和结果表明,与非正弦时域正交调制信号相比,编码调制后的信号功率谱能保持原有包络,但是会产生离散谱,提高功率谱旁瓣值.采用自相关性能好的序列进行编码可以降低离散谱的谱线。展开更多
基金in part by the National Natural Science Foundation of China under Grant 61771291,Grant 61671278in part by the Key Research and Development Project of Shandong Province under Grant 2018GGX101009,Grant 2019TSLH0202,Grant 2020CXGC010109+1 种基金in part by the National Nature Science Foundation of China for Excellent Young Scholars under Grant 61622111in part by the Project of International Cooperation and Exchanges NSFC under Grant 61860206005.
文摘In this paper,we design a spatial modulation based orthogonal time frequency space(SMOTFS)system to achieve improved transmission reliability and meet the high transmission rate and highspeed demands of future mobile communications,which fully utilizes the characteristics of spatial modulation(SM)and orthogonal time frequency space(OTFS)transmission.The detailed system design and signal processing of the SM-OTFS system have been presented.The closed-form expressions of the average symbol error rate(ASER)and average bit error rate(ABER)of the SM-OTFS system have been derived over the delay-Doppler channel with the help of the union bounding technique and moment-generating function(MGF).Meanwhile,the system complexity has been evaluated.Numerical results verify the correctness of the theoretical ASER and ABER analysis of the SM-OTFS system in the high signal-to-noise ratio(SNR)regions and also show that the SM-OTFS system outperforms the traditional SM based orthogonal frequency division multiplexing(SM-OFDM)system with limited complexity increase under mobile conditions,especially in high mobility scenarios.
文摘针对传统非正弦时域正交调制(Nonsinusoidal Orthogonal Modulation in Time Domain,NOTDM)系统多址复用容量有限的问题,提出一种基于正交或准正交序列的非正弦时域正交编码调制方法。给出了系统的调制模型和数学表达式,理论推导了调制信号的功率谱表达式并仿真分析了采用不同编码的调制信号的功率谱。理论和结果表明,与非正弦时域正交调制信号相比,编码调制后的信号功率谱能保持原有包络,但是会产生离散谱,提高功率谱旁瓣值.采用自相关性能好的序列进行编码可以降低离散谱的谱线。