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MU-MIMO Channel Adapted Precoding for MAI/ISI-Free Uplink Burst Transmission

机译:适用于无MAI / ISI的上行链路突发传输的MU-MIMO信道自适应预编码

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摘要

This paper considers the uplink of a multiuser direct-sequence code-division multiple-access communication system based on burst transmission over frequency-selective channels. A new precoding method is presented that is able to take benefit from the space diversity introduced at the mobile transmitters and at the common receiver. User-specific spreading codes are designed so that filters matched to the total impulse responses can remove completely the interference and maximize the signal-and-interference-plus-noise ratios. It is analytically proved that an infinite number of solutions is available to orthogonalize the system. Three particular solutions are considered. A progressive solution is firstly proposed to provide orthogonality in a simple way. Then a near-optimum solution is proposed to orthogonalize the system while attempting to reduce the total transmitted power. The minimization of the total transmitted power is a complex problem of nonlinear optimization that can only be solved using an iterative algorithm. The third solution proposed is based on an iterative algorithm. Those three solutions are analyzed in term of their different performance for a varying number of transmit and receive antennas. A comparison is also provided with a system using a conventional set of binary codes and linear or decision-feedback minimum mean-square error joint detection. It is shown that the near-optimum and iterative solutions are the only ones that are able to fully benefit from the space diversity.
机译:本文考虑了基于频率选择信道上突发传输的多用户直接序列码分多址通信系统的上行链路。提出了一种新的预编码方法,该方法可以受益于在移动发射机和公共接收机处引入的空间分集。设计用户特定的扩展码,以便与总脉冲响应匹配的滤波器可以完全消除干扰,并最大程度地提高信号和干扰加噪声比。分析证明,可以使用无数个解来正交化系统。考虑了三个特定的解决方案。首先提出一种渐进式解决方案,以简单的方式提供正交性。然后提出了一种近乎最佳的解决方案来正交化系统,同时尝试降低总发射功率。总发射功率的最小化是非线性优化的复杂问题,只能使用迭代算法才能解决。提出的第三种解决方案基于迭代算法。针对这三种解决方案针对不同数量的发射和接收天线的不同性能进行了分析。使用常规的二进制代码集和线性或决策反馈最小均方误差联合检测的系统也提供了比较。结果表明,只有近乎最优和迭代的解决方案才能够从空间多样性中充分受益。

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