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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Measurement-Based Performance Evaluation of MIMO Spatial Multiplexing in a Multipath-Rich Indoor Environment
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Measurement-Based Performance Evaluation of MIMO Spatial Multiplexing in a Multipath-Rich Indoor Environment

机译:多路径的室内环境中基于测量的MIMO空间复用性能评估

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Multiple-input multiple-output (MIMO) spatial multiplexing that needs to separate and detect transmitted signal streams by using processing at the receiver end can increase the data rates of transmissions on independent and identically distributed (i.i.d.) channels. Such channels have been considered to exist in nonline-of-sight (NLOS) environments. However, actual communications may also be conducted in line-of-sight (LOS) environments. While an LOS component can increase the received power level, it may also cause correlated channels that make it difficult to detect the transmitted streams. In this paper, we describe the performance of 4$,times,$ 4 MIMO spatial multiplexing based on LOS and NLOS channel measurements in an indoor environment. For eight configurations of uniform linear arrays (four antenna spacings and two array orientations), we evaluated the cumulative distribution function (CDF) of the channel capacity and bit error rate performance versus transmit power, and we analyzed them in terms of antenna pattern, fading correlation, CDFs of MIMO channel elements, and CDFs of eigenvalues. Results show that, despite higher fading correlations and non i.i.d. channel characteristics, the performance of MIMO spatial multiplexing in the LOS environment is better than that in the NLOS one. However, the performance in the measured LOS environment largely depends on the MIMO configuration.
机译:需要通过使用接收器端的处理来分离和检测传输的信号流的多输入多输出(MIMO)空间复用可以提高独立且均布的(i.d.)信道上的传输数据速率。此类渠道被认为存在于非视距(NLOS)环境中。但是,实际的通信也可以在视线(LOS)环境中进行。虽然LOS组件可以增加接收到的功率电平,但它也可能导致相关的信道,从而使检测传输流变得困难。在本文中,我们基于室内环境中的LOS和NLOS信道测量来描述4 $,times,$ 4 MIMO空间复用的性能。对于八种均匀线性阵列的配置(四个天线间距和两个阵列方向),我们评估了信道容量和误码率性能相对于发射功率的累积分布函数(CDF),并根据天线方向图,衰落对其进行了分析。相关性,MIMO信道元素的CDF和特征值的CDF。结果表明,尽管衰落相关性更高且非i.d.在信道特性上,LOS环境下的MIMO空间复用性能要优于NLOS之一。但是,所测量的LOS环境中的性能在很大程度上取决于MIMO配置。

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