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Ergodic Sum Capacity of Macrodiversity MIMO Systems in Flat Rayleigh Fading

机译:平面瑞利衰落下宏分集MIMO系统的遍历总和容量

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The prospect of base station cooperation leading to joint combining at widely separated antennas has led to increased interest in macrodiversity systems, where both sources and receive antennas are geographically distributed. In this scenario, analytical investigation of channel capacity is extremely challenging for finite-size systems since the channel matrices have a very general form where each path may have a different power. Hence, in this paper, we consider the ergodic sum capacity of a macrodiversity multiple-input multiple-output system with arbitrary numbers of sources and receive antennas operating over Rayleigh fading channels. For this system, we compute the exact ergodic capacity for a system with at most two transmit antennas and a compact approximation for the general system, which is shown to be very accurate over a wide range of cases. Finally, we compare our results with previous asymptotic results and bounds. Results are verified by Monte Carlo simulations and the impact on capacity of various channel power profiles is investigated.
机译:导致在广泛分开的天线处进行联合合并的基站合作的前景已引起人们对宏分集系统的兴趣,在宏分集系统中,源天线和接收天线都在地理上分布。在这种情况下,对信道容量的分析研究对于有限大小的系统极具挑战性,因为信道矩阵具有非常通用的形式,其中每个路径可能具有不同的功率。因此,在本文中,我们考虑具有任意数量的源和在瑞利衰落信道上工作的接收天线的宏分集多输入多输出系统的遍历总容量。对于此系统,我们计算出最多具有两个发射天线的系统的精确遍历容量,并为整个系统提供紧凑的近似值,这在很多情况下都非常准确。最后,我们将我们的结果与以前的渐近结果和界限进行比较。通过蒙特卡洛仿真验证了结果,并研究了对各种通道功率分布图容量的影响。

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