针对5G移动通信中的通用滤波多载波(universal filtered multi-carrier,UFMC)系统中信号的峰均比(peak-to-average power ratio,PAPR)较高的问题,提出了一种改进二进制离散粒子群优化的免疫规划的部分传输序列算法(IPA-IBPSO-PTS)。该...针对5G移动通信中的通用滤波多载波(universal filtered multi-carrier,UFMC)系统中信号的峰均比(peak-to-average power ratio,PAPR)较高的问题,提出了一种改进二进制离散粒子群优化的免疫规划的部分传输序列算法(IPA-IBPSO-PTS)。该算法在IBPSO-PTS算法的基础上,采用差分算法中的变异来避免其在迭代搜索后期出现种群多样性丢失的问题,同时引入了新型免疫规划算法中的疫苗接种和免疫选择操作,进一步提升算法的全局收敛速度。理论分析和仿真表明,提出的IPA-IBPSO-PTS算法能够获得更好的PAPR抑制性能,有效地降低了军事移动通信系统的复杂度和误码率。展开更多
An interference suppression design scheme based on conjugate weighted butterfly interleaving mapping(CWBIM)is proposed for inter-carrier interference(ICI)and inter-subband interference(IBI)in the received signals of u...An interference suppression design scheme based on conjugate weighted butterfly interleaving mapping(CWBIM)is proposed for inter-carrier interference(ICI)and inter-subband interference(IBI)in the received signals of universal filtered multi-carrier(UFMC)systems.It applies an interleaving mapping operation to subtract the interference coefficients of adjacent terms in ICI and IBI twice,thereby achieving suppression effects similar to the self-cancellation(SC)algorithm while maintaining the original data transmission efficiency.Meanwhile,conjugate and complex weighting operations can effectively suppress the impact of phase rotation errors in high-speed mobile channel environments,thereby further improving the bit error rate(BFR)performance of the system,Moreover,butterfly operation can effectively control the computational complexity of the interleaving mapping process.Theoretical analysis and simulation results show that,compared with the PSC-UFMC algorithm,the CWBIM-UFMC scheme proposed in this paper can effectively suppress ICI and IBI in the received signal without compromising data transmission efficiency and reducing computational complexity,thereby achieving good BER performance of the system.展开更多
In response to the problem of inter-carrier interference(ICI)and inter-subband interference(IBI)in the received signals of universal filtered multi-carrier(UFMC)systems,a novel interfer-ence suppression design scheme ...In response to the problem of inter-carrier interference(ICI)and inter-subband interference(IBI)in the received signals of universal filtered multi-carrier(UFMC)systems,a novel interfer-ence suppression design scheme applying the method of complex weighted matrix inter-leaving map-ping(CWMIM)is proposed on the basis of the existing suppression scheme of conjugate weighted butterfly interleaving mapping(CWBIM).The proposed scheme performs matrix interleaving map-ping on the transmitted signal,which not only improves the carrier interference ratio(CIR)of the received signal by combining the original IBI and ICI terms,but also further inhibits the probability of burst error in the received signal.Meanwhile,the scheme can further decrease the impact of phase rotation errors in the received signal by increasing the number of rotation factors.Theoretical analysis and simulation results demonstrate that compared with CWBIM-UFMC,the proposed CWMIM-UFMC can obtain more effective ICI and IBI suppression and better system bit error rate(BER)performance with only a little bit increase in computational complexity.展开更多
空中接口标准在移动通信网络中是最关键部分,而空中接口中最核心的是多址与复用技术。首先给出了第5代移动通信系统(5G)对空中接口技术的新要求,然后对OFDM(orthogonal frequency division multiplexing)存在的问题进行了分析,在此基础...空中接口标准在移动通信网络中是最关键部分,而空中接口中最核心的是多址与复用技术。首先给出了第5代移动通信系统(5G)对空中接口技术的新要求,然后对OFDM(orthogonal frequency division multiplexing)存在的问题进行了分析,在此基础上,重点讨论了滤波器组多载波传输(filterbank based multi carrier,FBMC),通用滤波多载波(universal filtered multi carrier,UFMC)和广义频分复用传输(generalized frequency division multiplexing,GFDM)等3种基于OFDM改进的新型多址与复用技术。展开更多
文摘为了适应未来无线通信系统中的设备多样性、高速率、低时延和低功率消耗的需要,新型波形研究成为第5代无线通信系统的关键技术之一。通用滤波多载波(Universal?filtered multicarrier,UFMC)是一种广泛研究的5G侯选波形。然而现有的UFMC研究只涉及UFMC?SISO的场景,UFMC?MIMO的可行性和性能分析仍然空缺,而MIMO波束成形必然是5G通信系统的重要场景,因此对UFMC?MIMO进行评估和研究具有重要价值。本文提出了一个UFMC?MIMO系统可行方案,包括发射机、接收机和波束成形实现算法。通过数学推导证明该方案能正确恢复发送端数据并通过仿真验证其性能。仿真结果表明,不论在加性高斯白噪声(Additive white Gaussian noise,AWGN)信道还是在多径信道下,UFMC?MIMO都具有比OFDM?MIMO更优越的性能,尤其在抗频偏鲁棒性上表现出很大的优越性,进而验证了UFMC?MIMO传输方案具备应用5G通信的能力。
文摘针对5G移动通信中的通用滤波多载波(universal filtered multi-carrier,UFMC)系统中信号的峰均比(peak-to-average power ratio,PAPR)较高的问题,提出了一种改进二进制离散粒子群优化的免疫规划的部分传输序列算法(IPA-IBPSO-PTS)。该算法在IBPSO-PTS算法的基础上,采用差分算法中的变异来避免其在迭代搜索后期出现种群多样性丢失的问题,同时引入了新型免疫规划算法中的疫苗接种和免疫选择操作,进一步提升算法的全局收敛速度。理论分析和仿真表明,提出的IPA-IBPSO-PTS算法能够获得更好的PAPR抑制性能,有效地降低了军事移动通信系统的复杂度和误码率。
基金Supported by the National Natural Science Foundation of China(No.61601296,61701295)the Science and Technology Innovation ActionPlan Project of Shanghai Science and Technology Commission(No.20511103500)the Talent Program of Shanghai University of Engineer-ing Science(No.2018RC43)。
文摘An interference suppression design scheme based on conjugate weighted butterfly interleaving mapping(CWBIM)is proposed for inter-carrier interference(ICI)and inter-subband interference(IBI)in the received signals of universal filtered multi-carrier(UFMC)systems.It applies an interleaving mapping operation to subtract the interference coefficients of adjacent terms in ICI and IBI twice,thereby achieving suppression effects similar to the self-cancellation(SC)algorithm while maintaining the original data transmission efficiency.Meanwhile,conjugate and complex weighting operations can effectively suppress the impact of phase rotation errors in high-speed mobile channel environments,thereby further improving the bit error rate(BFR)performance of the system,Moreover,butterfly operation can effectively control the computational complexity of the interleaving mapping process.Theoretical analysis and simulation results show that,compared with the PSC-UFMC algorithm,the CWBIM-UFMC scheme proposed in this paper can effectively suppress ICI and IBI in the received signal without compromising data transmission efficiency and reducing computational complexity,thereby achieving good BER performance of the system.
基金Supported by the National Natural Science Foundation of China(No.61601296,61201244)the Science and Technology Innovation Action Plan Project of Shanghai Science and Technology Commission(No.20511103500)the Talent Program of Shanghai University of Engineer-ing Science(No.2018RC43).
文摘In response to the problem of inter-carrier interference(ICI)and inter-subband interference(IBI)in the received signals of universal filtered multi-carrier(UFMC)systems,a novel interfer-ence suppression design scheme applying the method of complex weighted matrix inter-leaving map-ping(CWMIM)is proposed on the basis of the existing suppression scheme of conjugate weighted butterfly interleaving mapping(CWBIM).The proposed scheme performs matrix interleaving map-ping on the transmitted signal,which not only improves the carrier interference ratio(CIR)of the received signal by combining the original IBI and ICI terms,but also further inhibits the probability of burst error in the received signal.Meanwhile,the scheme can further decrease the impact of phase rotation errors in the received signal by increasing the number of rotation factors.Theoretical analysis and simulation results demonstrate that compared with CWBIM-UFMC,the proposed CWMIM-UFMC can obtain more effective ICI and IBI suppression and better system bit error rate(BER)performance with only a little bit increase in computational complexity.
文摘空中接口标准在移动通信网络中是最关键部分,而空中接口中最核心的是多址与复用技术。首先给出了第5代移动通信系统(5G)对空中接口技术的新要求,然后对OFDM(orthogonal frequency division multiplexing)存在的问题进行了分析,在此基础上,重点讨论了滤波器组多载波传输(filterbank based multi carrier,FBMC),通用滤波多载波(universal filtered multi carrier,UFMC)和广义频分复用传输(generalized frequency division multiplexing,GFDM)等3种基于OFDM改进的新型多址与复用技术。