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获得天线选择分集的空移键控调制算法 被引量:4
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作者 李晓峰 王磊 张晓阳 《西安交通大学学报》 EI CAS CSCD 北大核心 2013年第8期98-103,共6页
为了解决空移键控(SSK)调制不能获得发射分集的缺陷,提出了一种基于天线子集选择的SSK算法(ASD-SSK)。ASD-SSK算法利用各个发射天线的具有不同特性的无线传输信道构造了一个信号星座图;然后依据最优星座图子集准则(即星座点间的最小距... 为了解决空移键控(SSK)调制不能获得发射分集的缺陷,提出了一种基于天线子集选择的SSK算法(ASD-SSK)。ASD-SSK算法利用各个发射天线的具有不同特性的无线传输信道构造了一个信号星座图;然后依据最优星座图子集准则(即星座点间的最小距离最大)选择最优的发射天线子集;最后利用所选的天线子集,采用SSK调制方式来传输信息。在每次天线子集选择中将距离最小的一对信道分开,从而将总的天线集合分成2个子集,依次迭代,可以有效降低ASD-SSK天线子集选择的复杂度。仿真结果表明:相比SSK算法,ASD-SSK算法不仅获得了选择分集增益,而且总的发射天线数目越多,分集增益越大;在2bit.s-1.Hz-1、发射天线数为6、误码率为10-3的条件下,ASD-SSK算法有14dB左右的增益。 展开更多
关键词 空移键控调制 发射分集 信号星座图 天线选择
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Generalized spatial representation for digital modulation and its potential application 被引量:1
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作者 Hao HUAN Pengfei SHI +1 位作者 Xiaodong YAN Ran TAO 《Science China Earth Sciences》 SCIE EI CAS CSCD 2016年第12期47-58,共12页
Constellation mapping has provided a great convenience to measure the performance of digital signal modulation in Euclid space. However, traditional in-phase and quadrature(IQ) plane is difficult to express the freque... Constellation mapping has provided a great convenience to measure the performance of digital signal modulation in Euclid space. However, traditional in-phase and quadrature(IQ) plane is difficult to express the frequency modulation scheme such as minimum shift keying(MSK) and the time domain modulation such as cyclic code shift keying(CCSK). How to represent the digital signal modulation visually through constellation mapping is an attractive problem. To address this issue, in this paper, the combined frequency and phase modulation are utilized to define a new kind of constellation mapping, where the phase and frequency are quantized to the same elements. The uniform geometric construction for combined phase and frequency modulation is redefined in the 3D cylindrical coordinate system based on frequency(f), in-phase component(I) and quadrature component(Q). In the new coordinates, the quadrature frequency-phase shift keying(QFPSK) is produced by the QPSK with dimensional rotation matrix and denoted by the reduced dual quaternion. Furthermore, the spatial extension from QFPSK to chirp cyclic shift keying(Chirp CSK) is analyzed with bandwidth efficiency and energy efficiency. At last, the QFPSK is combined with the 2D OFDM, yielding the image OFDM system.Experimental results verify the effectiveness of QFPSK in the proposed system with the time-varying wireless channel and frequency selective fading channel respectively. 展开更多
关键词 quadrature frequency-phase shift keying (QFPSK) chirp cyclic shift keying spatial constellation mapping image OFDM system wireless communication
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