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Multiuser MIMO OFDM Based TDD/TDMA for Next Generation Wireless Communication Systems

机译:用于下一代无线通信系统的基于多用户MIMO OFDM的TDD / TDMA

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Multiple-input multiple-output (MIMO) wireless technology in combination with orthogonal frequency division multiplexing (MIMO OFDM) is an attractive air-interface solution for next-generation wireless local area networks (WLANs), wireless metropolitan area networks (WMANs), and fourth-generation mobile cellular wireless systems. In this paper, one multiuser MIMO OFDM systems with TDD/TDMA was proposed for next-generation wireless mobile communications, i.e., TDD/TDMA 4G, which can avoid or alleviate the specific limitations of existing techniques designed for multiuser MIMO OFDM systems in broadband wireless mobile channel scenarios, i.e., bad performance and extreme complexity of multiuser detectors for rank-deficient multiuser MIMO OFDM systems with CDMA as access modes, extreme challenges of spatial MIMO channel estimators in rank-deficient MIMO OFDM systems, and exponential growth complexity of optimal sub-carrier allocations for OFDMA-based MIMO OFDM systems. Furthermore, inspired from the Steiner channel estimation method in multi-user CDMA uplink wireless channels, we proposed a new design scheme of training sequence in time domain to conduct channel estimation. Training sequences of different transmit antennas can be simply obtained by truncating the circular extension of one basic training sequence, and the pilot matrix assembled by these training sequences is one circular matrix with good reversibility. A novel eigenmode transmission was also given in this paper, and data symbols encoded by space-time codes can be steered to these eigenmodes similar to MIMO wireless communication systems with single-carrier transmission. At the same time, an improved water-filling scheme was also described for determining the optimal transmit powers for orthogonal eigenmodes. The classical water-filling strategy is firstly adopted to determine the optimal power allocation and correspondent bit numbers for every eigenmode, followed by a residual power reallocation to further determine the additional bit numbers carried by every eigenmode. Compared with classical water-filling schemes, it can also obtain larger throughputs via residual power allocation. At last, three typical implementation schemes of multiuser MIMO OFDM with TDMA, CDMA and OFDMA, i.e., TDD/TDMA 4G, VSF-OFCDM and FuTURE B3G TDD, were tested by numerical simulations. Results indicated that the proposed multiuser MIMO OFDM system schemes with TDD/TDMA, i.e., TDD/TDMA 4G, can achieve comparable system performance and throughputs with low complexity and radio resource overhead to that of DoCoMo MIMO VSF-OFCDM and FuTURE B3G TDD.
机译:结合正交频分复用(MIMO OFDM)的多输入多输出(MIMO)无线技术是一种有吸引力的空中接口解决方案,适用于下一代无线局域网(WLAN),无线城域网(WMAN)和第四代移动蜂窝无线系统。本文提出了一种具有TDD / TDMA的多用户MIMO OFDM系统,用于下一代无线移动通信,即TDD / TDMA 4G,它可以避免或减轻宽带无线中为多用户MIMO OFDM系统设计的现有技术的特定限制。移动信道场景,例如,以CDMA作为接入模式的秩不足的多用户MIMO OFDM系统的多用户检测器的性能较差和极端复杂,秩不足的MIMO OFDM系统中空间MIMO信道估计器的极端挑战以及最优子信道的指数增长复杂性基于OFDMA的MIMO OFDM系统的载波分配。此外,受多用户CDMA上行无线信道中Steiner信道估计方法的启发,提出了一种时域训练序列的新设计方案来进行信道估计。通过截断一个基本训练序列的圆形扩展,可以简单地得到不同发射天线的训练序列,由这些训练序列组合而成的导频矩阵是具有良好可逆性的一个圆形矩阵。本文还提出了一种新颖的本征模式传输,并且类似于单载波传输的MIMO无线通信系统,由时空码编码的数据符号可以转向这些本征模式。同时,还描述了一种改进的注水方案,用于确定正交本征模的最佳发射功率。首先采用经典的注水策略来确定每个本征模式的最佳功率分配和相应的位数,然后通过剩余功率重新分配来进一步确定每个本征模式所携带的附加位数。与传统的注水方案相比,它还可以通过剩余功率分配获得更大的吞吐量。最后,通过数值仿真测试了三种具有TDMA,CDMA和OFDMA的多用户MIMO OFDM的典型实现方案,即TDD / TDMA 4G,VSF-OFCDM和FuTURE B3G T​​DD。结果表明,提出的具有TDD / TDMA(即TDD / TDMA 4G)的多用户MIMO OFDM系统方案可以实现与DoCoMo MIMO VSF-OFCDM和Future B3G T​​DD相当的系统性能和吞吐量,并且具有较低的复杂性和无线电资源开销。

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