Generalized Space Shift Keying (GSSK) modulation is a low-complexity spatial nmltiplexing technique for nmltiple-antenna wireless systems. However, effective transmit antenna combinations have to be preselected, and...Generalized Space Shift Keying (GSSK) modulation is a low-complexity spatial nmltiplexing technique for nmltiple-antenna wireless systems. However, effective transmit antenna combinations have to be preselected, and there exist redundant antenna combinations which are not used in GSSK. In this paper, a novel adaptive mapping scheme for GSSK modulation, named as Adaptive Mapping Generalized Space Shift Keying (AMGSSK), is presented. Compared with GSSK, the antenna combinations are updated adaptively according to the Channel State Inforrmtion (CSI) in the proposed AMGSSK system, and the perfonrance of average Symbol Error Rate (SER) is reduced considerably. In the proposed scheme, two algorithrrs for selecting the optimum antenna combinations are described. The SER perfonmnce of AMGSSK is analyzed theoretically, and validated by Monte Carlo sinmlation. It is shown that the proposed AMGSSK scheme has good perfonmnce in SER and spectral efficiency.展开更多
广义空移键控(Generalized Space Shift Keying modulation,GSSK)是一种新型的多天线传输技术,利用天线组发送天线索引传递信息。通过对莱斯衰落信道下GSSK性能的深入分析,系统了解了GSSK的抗莱斯信道衰落能力。发送端介绍了GSSK的传输...广义空移键控(Generalized Space Shift Keying modulation,GSSK)是一种新型的多天线传输技术,利用天线组发送天线索引传递信息。通过对莱斯衰落信道下GSSK性能的深入分析,系统了解了GSSK的抗莱斯信道衰落能力。发送端介绍了GSSK的传输原理及天线映射规则;接收端对天线组序列采用最大似然算法,以保证发送天线组能被正确检测,通过分析GSSK误码率上界,清晰展示了天线检测解调环节的误码问题。最后,仿真分析GSSK在莱斯信道下的性能,与SSK进行了比较,总结了GSSK的性能劣势并提出了改进意见。展开更多
广义空频索引调制(generalized space and frequency index modulation,GSFIM)技术的提出显示了其相比传统多输入多输出正交频分复用技术更优的系统性能。然而,GSFIM有着较复杂的系统结构以及高复杂度的检测器。讨论一种特殊形式的空频...广义空频索引调制(generalized space and frequency index modulation,GSFIM)技术的提出显示了其相比传统多输入多输出正交频分复用技术更优的系统性能。然而,GSFIM有着较复杂的系统结构以及高复杂度的检测器。讨论一种特殊形式的空频索引调制技术,即基于频率正交幅度调制(frequency and quadrature amplitude modulation,FQAM)/频相移键控(frequency and phase shift keying,FPSK)的空间调制(spatial modulation,SM)技术,其大大简化了系统结构。为了进一步提升该系统的频谱效率,提出了结合非正交子载波的FQAM/FPSK-SM。仿真结果表明,在不同的参数配置下,通过调整压缩系数,非正交FQAM/FPSK-SM系统不仅能够带来频谱效率的提升,而且能够在发送速率相同的前提下达到与正交系统基本相同的性能,提高了系统的单位带宽吞吐量。展开更多
基金supported partially by the National Key Basic Research Program of China under Grant No.2007CB310605the Science and Technology Development Fund of Tianjin Colleges and Universities under Grant No.20080708the Research Fund of Tianjin University of Technology and Education under Grants No.KJ09-012,No.KJ10-06
文摘Generalized Space Shift Keying (GSSK) modulation is a low-complexity spatial nmltiplexing technique for nmltiple-antenna wireless systems. However, effective transmit antenna combinations have to be preselected, and there exist redundant antenna combinations which are not used in GSSK. In this paper, a novel adaptive mapping scheme for GSSK modulation, named as Adaptive Mapping Generalized Space Shift Keying (AMGSSK), is presented. Compared with GSSK, the antenna combinations are updated adaptively according to the Channel State Inforrmtion (CSI) in the proposed AMGSSK system, and the perfonrance of average Symbol Error Rate (SER) is reduced considerably. In the proposed scheme, two algorithrrs for selecting the optimum antenna combinations are described. The SER perfonmnce of AMGSSK is analyzed theoretically, and validated by Monte Carlo sinmlation. It is shown that the proposed AMGSSK scheme has good perfonmnce in SER and spectral efficiency.
文摘广义空移键控(Generalized Space Shift Keying modulation,GSSK)是一种新型的多天线传输技术,利用天线组发送天线索引传递信息。通过对莱斯衰落信道下GSSK性能的深入分析,系统了解了GSSK的抗莱斯信道衰落能力。发送端介绍了GSSK的传输原理及天线映射规则;接收端对天线组序列采用最大似然算法,以保证发送天线组能被正确检测,通过分析GSSK误码率上界,清晰展示了天线检测解调环节的误码问题。最后,仿真分析GSSK在莱斯信道下的性能,与SSK进行了比较,总结了GSSK的性能劣势并提出了改进意见。
文摘广义空频索引调制(generalized space and frequency index modulation,GSFIM)技术的提出显示了其相比传统多输入多输出正交频分复用技术更优的系统性能。然而,GSFIM有着较复杂的系统结构以及高复杂度的检测器。讨论一种特殊形式的空频索引调制技术,即基于频率正交幅度调制(frequency and quadrature amplitude modulation,FQAM)/频相移键控(frequency and phase shift keying,FPSK)的空间调制(spatial modulation,SM)技术,其大大简化了系统结构。为了进一步提升该系统的频谱效率,提出了结合非正交子载波的FQAM/FPSK-SM。仿真结果表明,在不同的参数配置下,通过调整压缩系数,非正交FQAM/FPSK-SM系统不仅能够带来频谱效率的提升,而且能够在发送速率相同的前提下达到与正交系统基本相同的性能,提高了系统的单位带宽吞吐量。