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Joint transmit-receive space-time equalization in spatially correlated MIMO channels: a beamforming approach

机译:空间相关的MIMO信道中的联合发送-接收空时均衡:一种波束成形方法

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摘要

Multi-input multi-output (MIMO) channels have been shown in the literature to present a significant capacity increase over single-input single-output ones in some situations. To achieve this theoretical capacity, the constituent parallel subchannels arising from the MIMO channel have to be properly used. Many practical schemes are being currently developed to achieve this goal. We first show that, from an information-theoretic point of view, beamforming becomes asymptotically optimal as the spatial correlation of the channel fading increases. In light of this result, wideband beamvectors are jointly derived for both transmission and reception. We allow a controlled partial response and design zero-forcing and minimum mean-squared error transmit-receive filters. Conceptually, the beamforming scheme is shown to decompose into two stages: the first one corresponds to a spatial flattening of the MIMO channel, i.e., choosing the subchannel with the highest gain at each frequency; the second stage depends on the particular design criterion and performs a power distribution at the transmitter and defines the equalizer at the receiver. These methods are further extended to the general case of multiple beamforming, i.e., when more than one subchannel are used. An exact and practical implementation of a modified "waterfilling" solution required for the filter design is proposed. All derived methods are assessed and compared in terms of capacity and bit-error rate.
机译:在某些情况下,多输入多输出(MIMO)信道已显示出比单输入单输出大得多的容量增加。为了获得该理论容量,必须适当地使用由MIMO信道产生的并行子信道。当前正在开发许多实用的方案来实现该目标。我们首先表明,从信息论的角度来看,随着信道衰落的空间相关性增加,波束成形渐近最优。根据这个结果,宽带波束矢量被联合导出以用于发送和接收。我们允许受控的部分响应,并设计零迫和最小均方误差收发滤波器。从概念上讲,波束形成方案被分解为两个阶段:第一个阶段对应于MIMO信道的空间平坦化,即选择每个频率下增益最高的子信道;第二阶段取决于特定的设计标准,并在发射机处执行功率分配,并在接收机处定义均衡器。这些方法进一步扩展到多波束成形的一般情况,即,当使用多个子信道时。提出了过滤器设计所需的修改后的“注水”解决方案的精确而实际的实现。根据容量和误码率对所有派生方法进行评估和比较。

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