A low complex minimum mean-square error frequency-domain decision feedback (MMSE-FDDF) equalization algorithm is proposed in this paper for the single-carrier V-BLAST systems. Exploiting the factor that the discrete...A low complex minimum mean-square error frequency-domain decision feedback (MMSE-FDDF) equalization algorithm is proposed in this paper for the single-carrier V-BLAST systems. Exploiting the factor that the discrete Fourier transform (DFT) is unitary, the proposed receiver can equalize the signals by the MMSE detecting to the spectrums in the frequency domain instead of the waveforms in the time domain. In order to obtain the right decisions, the detector must be able to equalize the overall spectrum with regard to each layer. This work can be performed very efficiently since the system matrix has been designed as a special block-circulant-block matrix. Similar to other V-BLAST-like systems, the detecting order has strong impact on the performance of MMSE-FDDF. Therefore, we further give a fast optimally sorting scheme for the MMSE-FDDF architecture. By using the newly constructed matrix, the coefficients computation and the sorting can be combined into one process, and then we employ the modified Gram-Schmidt (MGS) to simplify the process. The simulation results and the computational complexity analysis show that the proposed MMSE-FDDF has better tradeoff between the performance and the complexity than the existing algorithms. In addition, MMSE-FDDF can avoid the performance floor caused by the overlap-and-save technique in the severe dispersive channel.展开更多
Two utility-optimization dynamic subcarrier allocation(DSA) algorithms are designed for single carrier frequency division multiple access system(SC-FDMA).The two proposed algorithms aim to support diverse transmission...Two utility-optimization dynamic subcarrier allocation(DSA) algorithms are designed for single carrier frequency division multiple access system(SC-FDMA).The two proposed algorithms aim to support diverse transmission capacity requirements in wireless networks,which consider both the channel state information(CSI) and the capacity requirements of each user by setting appropriate utility functions.Simulation results show that with considerable lower computational complexity,the first utility-optimization algorithm can meet the system capacity requirements of each user effectively.However,the rate-sum capacity performance is poor.Furthermore,the second proposed utility-optimization algorithm can contribute a better trade-off between system rate-sum capacity requirement and the capacity requirements of each user by introducing the signal to noise ratio(SNR) information to the utility function based on the first utility-optimization algorithm,which can improve the user requirements processing capability as well as achieve a better sum-rate capacity.展开更多
This paper presents a theoretical comparison of a single carrier system and a multi-carrier system through an analysis of the achievable rate under frequency selective fading with channel state information at the rece...This paper presents a theoretical comparison of a single carrier system and a multi-carrier system through an analysis of the achievable rate under frequency selective fading with channel state information at the receiver. A scheme was designed to compare the achievable rates of a single carrier system and an Or- thogonal Frequency Division Multiplexing (OFDM) system. A thorough theoretical analysis of the two-path channel was conducted, and simulations were also used to analyze practical stochastic channels. Analysis and simulation results show that the achievable rates of the two approaches are comparable when the channel is flat fading. However, when the channel is frequency selective fading, the single carrier system outperforms the OFDM system. The achievable rate of the OFDM system is about 10% lower than that of the single carrier system at higher SNRs.展开更多
在单载波频分多址接入(single carrier frequency division multiple access,SC-FDMA)系统中提出用Ⅰ型、Ⅱ型、Ⅲ型、Ⅳ型4种不同类型离散余弦变换代替离散傅里叶变换。基于不同变换,分别推导上行链路传输信号时域表达式,并对推导式展...在单载波频分多址接入(single carrier frequency division multiple access,SC-FDMA)系统中提出用Ⅰ型、Ⅱ型、Ⅲ型、Ⅳ型4种不同类型离散余弦变换代替离散傅里叶变换。基于不同变换,分别推导上行链路传输信号时域表达式,并对推导式展开分析,比较基于不同类型离散余弦变换的SC-FDMA系统信号的特性及PAPR(peak to av-erage power ratio)性能。仿真结果表明基于DCT-Ⅱ的SC-FDMA系统与基于DFT(discrete Fourier transform)的系统一致,具有更好的PAPR特性。展开更多
为有效利用非理想信道状态信息(imperfect channel state information,ICSI)进行自适应资源调度以提高链路平均有效吞吐量,给出了采用M-QAM调制方式时ICSI下用户平均成功传输速率公式,通过仿真验证了其正确性,并据该公式提出一种基于ICS...为有效利用非理想信道状态信息(imperfect channel state information,ICSI)进行自适应资源调度以提高链路平均有效吞吐量,给出了采用M-QAM调制方式时ICSI下用户平均成功传输速率公式,通过仿真验证了其正确性,并据该公式提出一种基于ICSI的自适应调制方案。通过分别研究ICSI对自适应子载波分配和自适应调制的影响,分析ICSI可靠度对链路平均有效吞吐量的影响。仿真结果表明,基于ICSI的自适应调制方案可有效对抗ICSI可靠度下降对平均有效吞吐量的影响;相比之下,采用自适应子载波分配算法时,ICSI可靠度的下降对链路平均有效吞吐量的影响较大。展开更多
LTE(Long Term Evolution,长期演进)项目是3G的演进,始于2004年3GPP的多伦多会议。LTE并非人们普遍误解的4G技术,而是3G与4G技术之间的一个过渡,是3.9G的全球标准。它改进并增强了3G的空中接入技术,采用单载波频分多址和虚拟多入多出作...LTE(Long Term Evolution,长期演进)项目是3G的演进,始于2004年3GPP的多伦多会议。LTE并非人们普遍误解的4G技术,而是3G与4G技术之间的一个过渡,是3.9G的全球标准。它改进并增强了3G的空中接入技术,采用单载波频分多址和虚拟多入多出作为其无线网络演进的唯一标准。因此,本文针对这两种技术标准进行系统的阐述。展开更多
基金Supported partially by the National Natural Science Foundation of China (Grant Nos. 60572046, 60502022, 60772095)the National High-TechResearch and Development Program of China ("863" Program)(Grant No. 2006AA01Z220)
文摘A low complex minimum mean-square error frequency-domain decision feedback (MMSE-FDDF) equalization algorithm is proposed in this paper for the single-carrier V-BLAST systems. Exploiting the factor that the discrete Fourier transform (DFT) is unitary, the proposed receiver can equalize the signals by the MMSE detecting to the spectrums in the frequency domain instead of the waveforms in the time domain. In order to obtain the right decisions, the detector must be able to equalize the overall spectrum with regard to each layer. This work can be performed very efficiently since the system matrix has been designed as a special block-circulant-block matrix. Similar to other V-BLAST-like systems, the detecting order has strong impact on the performance of MMSE-FDDF. Therefore, we further give a fast optimally sorting scheme for the MMSE-FDDF architecture. By using the newly constructed matrix, the coefficients computation and the sorting can be combined into one process, and then we employ the modified Gram-Schmidt (MGS) to simplify the process. The simulation results and the computational complexity analysis show that the proposed MMSE-FDDF has better tradeoff between the performance and the complexity than the existing algorithms. In addition, MMSE-FDDF can avoid the performance floor caused by the overlap-and-save technique in the severe dispersive channel.
基金Supported by the National Basic Research Program of China(No.61393010101-1)the Defense-related Science & Technology Pre-Research Project of Shipbuilding Institute(No.10J3.1.6)
文摘Two utility-optimization dynamic subcarrier allocation(DSA) algorithms are designed for single carrier frequency division multiple access system(SC-FDMA).The two proposed algorithms aim to support diverse transmission capacity requirements in wireless networks,which consider both the channel state information(CSI) and the capacity requirements of each user by setting appropriate utility functions.Simulation results show that with considerable lower computational complexity,the first utility-optimization algorithm can meet the system capacity requirements of each user effectively.However,the rate-sum capacity performance is poor.Furthermore,the second proposed utility-optimization algorithm can contribute a better trade-off between system rate-sum capacity requirement and the capacity requirements of each user by introducing the signal to noise ratio(SNR) information to the utility function based on the first utility-optimization algorithm,which can improve the user requirements processing capability as well as achieve a better sum-rate capacity.
基金Supported by the National Key Technology Research and Devel-opment Program (No. 2009ZX03006-007-02)the National Natural Science Foundation of China (Nos. 60972019, 61021001,and 60928001)
文摘This paper presents a theoretical comparison of a single carrier system and a multi-carrier system through an analysis of the achievable rate under frequency selective fading with channel state information at the receiver. A scheme was designed to compare the achievable rates of a single carrier system and an Or- thogonal Frequency Division Multiplexing (OFDM) system. A thorough theoretical analysis of the two-path channel was conducted, and simulations were also used to analyze practical stochastic channels. Analysis and simulation results show that the achievable rates of the two approaches are comparable when the channel is flat fading. However, when the channel is frequency selective fading, the single carrier system outperforms the OFDM system. The achievable rate of the OFDM system is about 10% lower than that of the single carrier system at higher SNRs.
文摘在单载波频分多址接入(single carrier frequency division multiple access,SC-FDMA)系统中提出用Ⅰ型、Ⅱ型、Ⅲ型、Ⅳ型4种不同类型离散余弦变换代替离散傅里叶变换。基于不同变换,分别推导上行链路传输信号时域表达式,并对推导式展开分析,比较基于不同类型离散余弦变换的SC-FDMA系统信号的特性及PAPR(peak to av-erage power ratio)性能。仿真结果表明基于DCT-Ⅱ的SC-FDMA系统与基于DFT(discrete Fourier transform)的系统一致,具有更好的PAPR特性。
文摘为有效利用非理想信道状态信息(imperfect channel state information,ICSI)进行自适应资源调度以提高链路平均有效吞吐量,给出了采用M-QAM调制方式时ICSI下用户平均成功传输速率公式,通过仿真验证了其正确性,并据该公式提出一种基于ICSI的自适应调制方案。通过分别研究ICSI对自适应子载波分配和自适应调制的影响,分析ICSI可靠度对链路平均有效吞吐量的影响。仿真结果表明,基于ICSI的自适应调制方案可有效对抗ICSI可靠度下降对平均有效吞吐量的影响;相比之下,采用自适应子载波分配算法时,ICSI可靠度的下降对链路平均有效吞吐量的影响较大。
文摘LTE(Long Term Evolution,长期演进)项目是3G的演进,始于2004年3GPP的多伦多会议。LTE并非人们普遍误解的4G技术,而是3G与4G技术之间的一个过渡,是3.9G的全球标准。它改进并增强了3G的空中接入技术,采用单载波频分多址和虚拟多入多出作为其无线网络演进的唯一标准。因此,本文针对这两种技术标准进行系统的阐述。