空时联合相关对水声MIMO容量的影响

Dazhi Piao, Biao Jiang, Huabing Yu, Chang-yu Sun, Qihu Li
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引用次数: 4

摘要

采用移动发射阵列和静止接收阵列的多径空时相关模型,研究了空间和时间相关对水声多输入多输出信道容量的联合影响。生成均匀线性阵列的时空相关函数,可以表示为空间相关函数和时间相关函数的乘积,因此可以通过先生成n/ T/*n/ R/个具有所需自相关函数的独立随机变量,然后乘以其相互关联矩阵的平方根来生成时空联合相关的复高斯变量。采用蒙特卡罗仿真方法,从发射机速度、阵元间距、仰角扩散等参数出发,研究了时空相关对水声MIMO容量的影响。仿真结果表明,在散射环境差、单元间距不够大的情况下,当采用n个发射单元和n个接收单元时,中断容量不会随着n的增加而线性增加,只有在散射环境丰富、单元间距足够大的情况下才能获得较大的容量增益,并且发射机速度对容量的影响取决于块长度T。当T/spl Gt/T/sub / coh/时,不同发射机速度下的容量相同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of space-time joint correlation on the underwater acoustic MIMO capacity
The joint effect of space and time correlation on the underwater acoustic Multiple-Input-Multiple-Output (MIMO) channel capacity is studied using the multipath space-time correlation model with a moving transmit array and a stationary receive array. The space-time correlation function of the uniform liner array is generated, which can be expressed as the production of the space correlation function and the time correlation function, so the space-time joint correlated complex Gaussian variates can be generated by firstly generating n/sub T/*n/sub R/ independent random variates with the desired autocorrelation function, and then multiplied by the square root of their cross-correlation matrix. Using Monte Carlo simulations, the effect of space and time correlation on the underwater acoustic MIMO capacity is studied by the parameters of transmitter velocity, array element spacing, and elevation angle spread. It is shown from the simulation results that in the case of a poor scattering environment and not sufficiently large element spacing, when n transmitter elements and n receiver elements are employed, the outage capacity will not increase linearly with the increasing of n, and large capacity gains can only be obtained in a rich scattering environment and with sufficiently large element spacing, and the effect of transmitter velocity on the capacity depends on the block length T, when T/spl Gt/T/sub coh/, capacities with different transmitter velocity will be the same.
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