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Resource pooling and effective bandwidths in CDMA networks with multiuser receivers and spatial diversity

机译:具有多用户接收器和空间分集的CDMA网络中的资源池和有效带宽

摘要

Much of the performance analysis on multiuser receivers for direct-sequence code-division multiple-access (CDMA) systems is focused on worst case near-far scenarios. The user capacity of power-controlled networks with multiuser receivers are less well-understood. In [1], it was shown that under some conditions, the user capacity of an uplink power-controlled CDMA cell for several important linear receivers can be very simply characterized via a notion of effective bandwidth. In the present paper, we show that these results extend to the case of antenna arrays. We consider a CDMA system consisting of users transmitting to an antenna array with a multiuser receiver, and obtain the limiting signal-to-interference (SIR) performance in a large system using random spreading sequences. Using this result, we show that the SIR requirements of all the users can be met if and only if the sum of the effective bandwidths of the users is less than the total number of degrees of freedom in the system. The effective bandwidth of a user depends only on its own requirements. Our results show that the total number of degrees of freedom of the whole system is the product of the spreading gain and the number of antennas. In the case when the fading distributions to the antennas are identical, we show that a curious phenomenon of "resource pooling" arises: the multiantenna system behaves like a system with only one antenna but with the processing gain the product of the processing gain of the original system and the number of antennas, and the received power of each user the sum of the received powers at the individual antennas.
机译:直接序列码分多址(CDMA)系统在多用户接收机上进行的许多性能分析都集中在最坏情况的近距离场景中。具有多用户接收器的功率控制网络的用户容量了解得很少。在[1]中,表明了在某些条件下,可以通过有效带宽的概念非常简单地表征几个重要的线性接收机的上行链路功率控制的CDMA小区的用户容量。在本文中,我们表明这些结果扩展到了天线阵列的情况。我们考虑一种由用户组成的CDMA系统,该用户使用多用户接收器发送到天线阵列,并在使用随机扩展序列的大型系统中获得极限信号干扰(SIR)性能。使用该结果,我们表明,当且仅当用户的有效带宽之和小于系统中自由度的总数时,才能满足所有用户的SIR要求。用户的有效带宽仅取决于其自身的要求。我们的结果表明,整个系统的自由度总数是扩频增益与天线数量的乘积。在天线的衰落分布相同的情况下,我们表明出现了“资源池”的奇怪现象:多天线系统的行为就像只有一个天线但处理增益为系统增益的乘积的系统。原始系统和天线的数量,以及每个用户的接收功率,即各个天线的接收功率之和。

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