This work explores the performances of Space-Time and Space Frequency Coded Orthogonal Frequency Division Multiplexing (OFDM) with simple two branches transmit diversity scheme. The combination of multiple-antenna and...This work explores the performances of Space-Time and Space Frequency Coded Orthogonal Frequency Division Multiplexing (OFDM) with simple two branches transmit diversity scheme. The combination of multiple-antenna and orthogonal frequency division multiplexing (OFDM) provides reliable communications over frequency selective fading channels. We focus on the application of space-time block codes (STBC) and space-frequency block codes (SFBC) in OFDM systems over time-varying and frequency-selective channels. SFBC transmitter shows superior performance in fast varying channels while STBC shows better performance in frequency selective channels. A switching technique is presented that selects an appropriate transmission scheme between the STBC and SFBC assuming Rayleigh fading model.展开更多
Capacity analysis is a fundamental and important issue for continuous phase modulation (CPM) signals. In the letter, we investigate the capacity formula of CPM MIMO systems. Using Finite State Machine (FSM), the CPM s...Capacity analysis is a fundamental and important issue for continuous phase modulation (CPM) signals. In the letter, we investigate the capacity formula of CPM MIMO systems. Using Finite State Machine (FSM), the CPM symbols can be modeled as Markov source by combining channel and CPM modulation. Thus the capacity of CPM signals can be derived in form of the erroneous probability and normalized CPM bandwidth. In addition, the capacity of CPM MIMO systems is derived over Gaussian channels and Rayleigh channels. Finally, numerical simulations are implemented according to various parameters such as modulation scheme, modulation index h, memory length L, and antenna configuration.展开更多
The performance and capacity of multiple-input multiple-output (MIMO) wireless channels are limited by the spatial fading correlation between antenna elements. This limitation is due to the use of mono polarized anten...The performance and capacity of multiple-input multiple-output (MIMO) wireless channels are limited by the spatial fading correlation between antenna elements. This limitation is due to the use of mono polarized antennas at receiver and transmitter sides. In this paper, in order to reduce the antenna correlation, the polarization diversity technique is employed. Although the spatial antenna correlation is attenuated for multi-polarization configurations, the cross-polar components appear. This paper highlights the impact of depolarization effect on the MIMO channel capacity for a 4×4 uniform linear antenna array. We assume that the channel is unknown at the transmitter and perfectly known at the receiver so that equal power is distributed to each of the transmit antennas. The numerical results illustrate that for low depolarization and spatial correlation, the capacity of single-polarization configuration behaves better than that of multi-polarization configuration.展开更多
为更好地解决室外三维(3D)空间域的移动通信问题,提出了一种新型室外3D空间域散射信道统计模型,主要研究MIMO多天线系统的接收性能。在宏蜂窝小区移动通信环境中,模型能够估计多径衰落信道的重要空间信道参数,首先推导了多径衰落信道的...为更好地解决室外三维(3D)空间域的移动通信问题,提出了一种新型室外3D空间域散射信道统计模型,主要研究MIMO多天线系统的接收性能。在宏蜂窝小区移动通信环境中,模型能够估计多径衰落信道的重要空间信道参数,首先推导了多径衰落信道的到达角(Angle of Arrival,AOA)概率密度分布。此外模型在设置多输入多输出(Multiple Input Multiple Output,MIMO)多天线的均匀线性阵列(Uniform Linear Array,ULA)和圆形阵列(Uniform Circular Array,UCA)的基础上,分析了波达信号不同方位角分布对散射信道中MIMO性能的影响因素,包括MIMO空间相关性、信道容量以及天线阵列配置。数值仿真结果与3D多径衰落信道模型对比,表明本模型的信道参数估计符合理论和实际的通信环境,为评估MIMO天线接收系统与仿真无线通信系统提供了创新性的研究。展开更多
文摘This work explores the performances of Space-Time and Space Frequency Coded Orthogonal Frequency Division Multiplexing (OFDM) with simple two branches transmit diversity scheme. The combination of multiple-antenna and orthogonal frequency division multiplexing (OFDM) provides reliable communications over frequency selective fading channels. We focus on the application of space-time block codes (STBC) and space-frequency block codes (SFBC) in OFDM systems over time-varying and frequency-selective channels. SFBC transmitter shows superior performance in fast varying channels while STBC shows better performance in frequency selective channels. A switching technique is presented that selects an appropriate transmission scheme between the STBC and SFBC assuming Rayleigh fading model.
文摘Capacity analysis is a fundamental and important issue for continuous phase modulation (CPM) signals. In the letter, we investigate the capacity formula of CPM MIMO systems. Using Finite State Machine (FSM), the CPM symbols can be modeled as Markov source by combining channel and CPM modulation. Thus the capacity of CPM signals can be derived in form of the erroneous probability and normalized CPM bandwidth. In addition, the capacity of CPM MIMO systems is derived over Gaussian channels and Rayleigh channels. Finally, numerical simulations are implemented according to various parameters such as modulation scheme, modulation index h, memory length L, and antenna configuration.
文摘The performance and capacity of multiple-input multiple-output (MIMO) wireless channels are limited by the spatial fading correlation between antenna elements. This limitation is due to the use of mono polarized antennas at receiver and transmitter sides. In this paper, in order to reduce the antenna correlation, the polarization diversity technique is employed. Although the spatial antenna correlation is attenuated for multi-polarization configurations, the cross-polar components appear. This paper highlights the impact of depolarization effect on the MIMO channel capacity for a 4×4 uniform linear antenna array. We assume that the channel is unknown at the transmitter and perfectly known at the receiver so that equal power is distributed to each of the transmit antennas. The numerical results illustrate that for low depolarization and spatial correlation, the capacity of single-polarization configuration behaves better than that of multi-polarization configuration.
文摘为更好地解决室外三维(3D)空间域的移动通信问题,提出了一种新型室外3D空间域散射信道统计模型,主要研究MIMO多天线系统的接收性能。在宏蜂窝小区移动通信环境中,模型能够估计多径衰落信道的重要空间信道参数,首先推导了多径衰落信道的到达角(Angle of Arrival,AOA)概率密度分布。此外模型在设置多输入多输出(Multiple Input Multiple Output,MIMO)多天线的均匀线性阵列(Uniform Linear Array,ULA)和圆形阵列(Uniform Circular Array,UCA)的基础上,分析了波达信号不同方位角分布对散射信道中MIMO性能的影响因素,包括MIMO空间相关性、信道容量以及天线阵列配置。数值仿真结果与3D多径衰落信道模型对比,表明本模型的信道参数估计符合理论和实际的通信环境,为评估MIMO天线接收系统与仿真无线通信系统提供了创新性的研究。