论文标题

实现具有容量和SNR多路复用增长的空间多样性的MIMO通道模型

Realization of MIMO Channel Model for Spatial Diversity with Capacity and SNR Multiplexing Gains

论文作者

Bharati, Subrato, Podder, Prajoy, Gandhi, Niketa, Abraham, Ajith

论文摘要

多个输入多重输出(MIMO)系统传输是一种流行的多样性技术,可以提高发射机,通信通道和接收器是重要元素的通信系统的可靠性。当位错误率非常低时,可以确保数据传输可靠性。通常,在MIMO系统中的传输和接收部分都使用了多个天线元件。 MIMO系统在无线通道中利用天线多样性或空间多样性编码系统,因为无线通道严重遭受了多径的衰落,在这些多路径逐渐逐渐逐渐反映了传输信号在到达目的地或接收部分之前。当Kappa的值(发射机硬件中的损伤水平)从0.02降低到0.005时,MIMO通道平均容量的损害水平相差超过80%。已经观察到有限的SNR多路复用增益(MIMO系统能力与SISO系统容量的比例)相应地确定性和不相关的瑞利褪色通道。核心差异在于高SNR级别。这可能是有两个原因的:(a)在收发器障碍下的限制更快地收敛(b)基于数字建筑计划或传播环境的地形图构建的确定性通道,当传播天线的数量比接收天线的数量更大时,渐近造成的增益优于多路复用增益。

Multiple input multiple output (MIMO) system transmission is a popular diversity technique to improve the reliability of a communication system where transmitter, communication channel and receiver are the important elements. Data transmission reliability can be ensured when the bit error rate is very low. Normally, multiple antenna elements are used at both the transmitting and receiving section in MIMO Systems. MIMO system utilizes antenna diversity or spatial diversity coding system in wireless channels because wireless channels severely suffer from multipath fading in which the transmitted signal is reflected along various multiple paths before reaching to the destination or receiving section.Parallel transmission of MIMO system has also been implemented where both the real part and imaginary part of the original, detected and the corresponding received data sequence has been described graphically. The MIMO channel average capacity is achieved more than 80% for dissimilar levels of impairments in transceiver when the value of kappa (Level of impairments in transmitter hardware) reduces from 0.02 to 0.005. The finite-SNR multiplexing gain (Proportion of MIMO system capacity to SISO system capacity) has been observed for deterministic and uncorrelated Rayleigh fading channels correspondingly. The core difference is in the high SNR level. It may occur for two reasons: (a) there is a quicker convergence to the limits under transceiver impairments (b) deterministic channels that are built on digital architectural plans or topographical maps of the propagation environment acquire an asymptotic gain superior than multiplexing gain when the number of transmitting antenna is greater than the number of receiving antenna.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源