Quadrature signaling-based cooperative transmission is an efficient and simple scheme to obtain spatial diversity.However,this scheme causes date rate loss compared with direct transmission.In this work,our focus is o...Quadrature signaling-based cooperative transmission is an efficient and simple scheme to obtain spatial diversity.However,this scheme causes date rate loss compared with direct transmission.In this work,our focus is on recovering from the data rate loss while simultaneously achieving spatial diversity.Particularly,an enhanced quadrature signaling-based cooperative scheme was designed,which can realize full-rate transmission by using the signal space diversity(SSD)technique.Then,accurate bit error rate(BER)expression for the full-rate scheme was derived over independent and non-identically distributed(INID)Rayleigh fading channels.Specifically,a closed-form BER expression is obtained,which is quite tight over the whole SNR range,and thus allows for rapid and efficient evaluation of system performance under various channel conditions.Moreover,an asymptotic approximation of the BER was derived to show that the full-rate scheme can achieve full diversity.Simulation results verify the tightness of the analysis and show that the full-rate scheme significantly outperforms the traditional quadrature signaling-based scheme by about 2 dB with the same complexity order.展开更多
介绍了协同分集技术与放大前传(Amplify and Forward,AF)和解码前传(Decode and Forward,DF)两种中继模式,把两用户协同推广至多用户协同,并通过仿真比较了PSK(Phase Shifting Keying)与QAM(Quadrature Amplitude Modulation)两种调制...介绍了协同分集技术与放大前传(Amplify and Forward,AF)和解码前传(Decode and Forward,DF)两种中继模式,把两用户协同推广至多用户协同,并通过仿真比较了PSK(Phase Shifting Keying)与QAM(Quadrature Amplitude Modulation)两种调制下的性能.结果表明:性能随着协同用户数的增加而提高;且QAM调制下系统性能优于PSK调制.展开更多
基金Project(2012CB316100)supported by the National Basic Research Program of ChinaProjects(K50511010005,K50511010015)supported by the Fundamental Research Funds for the Central Universities of ChinaProject(B08038)supported by the"111"Program of China
文摘Quadrature signaling-based cooperative transmission is an efficient and simple scheme to obtain spatial diversity.However,this scheme causes date rate loss compared with direct transmission.In this work,our focus is on recovering from the data rate loss while simultaneously achieving spatial diversity.Particularly,an enhanced quadrature signaling-based cooperative scheme was designed,which can realize full-rate transmission by using the signal space diversity(SSD)technique.Then,accurate bit error rate(BER)expression for the full-rate scheme was derived over independent and non-identically distributed(INID)Rayleigh fading channels.Specifically,a closed-form BER expression is obtained,which is quite tight over the whole SNR range,and thus allows for rapid and efficient evaluation of system performance under various channel conditions.Moreover,an asymptotic approximation of the BER was derived to show that the full-rate scheme can achieve full diversity.Simulation results verify the tightness of the analysis and show that the full-rate scheme significantly outperforms the traditional quadrature signaling-based scheme by about 2 dB with the same complexity order.
文摘介绍了协同分集技术与放大前传(Amplify and Forward,AF)和解码前传(Decode and Forward,DF)两种中继模式,把两用户协同推广至多用户协同,并通过仿真比较了PSK(Phase Shifting Keying)与QAM(Quadrature Amplitude Modulation)两种调制下的性能.结果表明:性能随着协同用户数的增加而提高;且QAM调制下系统性能优于PSK调制.