We present the statistical characterization of a 2x2 Multiple-Input Multiple-Output wireless link operated in a mode-stirred enclosure, with channel state information available only at the receiver (agnostic transmitter). Our wireless channel measurements are conducted in absence of line of sight and varying the inter-element spacing between the two antenna elements in both the transmit and receive array. The mode-stirred cavity is operated: i) at a low number of stirrer positions to create statistical inhomogeneity; ii) at two different loading conditions, empty and with absorbers, in order to mimic a wide range of realistic equipment level enclosures. Our results show that two parallel channels are obtained within the confined space at both the operating conditions. The statistical characterization of the wireless channel is presented in terms of coherence bandwidth, path loss, delay spread and Rician factor, and wideband channel capacity. It is found that the severe multipath fading supported by a highly reflecting environment creates unbalance between the two Multiple-Input Multiple-Output channels, even in presence of substantial losses. Furthermore, the channel capacity has a multi-modal distribution whose average and variance scale monotonically with the number of absorbers. Results are of interest in IoT devices, including wireless chip-to-chip and device-to-device communications, operating in highly reflective environments.
翻译:我们展示了2x2多输出多输出无线连接的统计特征,该无线连接在模式紧张的附文中运行,只有接收器(不可知发报机)才能提供频道状态信息。我们的无线频道测量在没有视线的情况下进行,而且两个天线元素在传输和接收阵列中之间的间距也各不相同。模式紧张的洞穴运行方式是:i)在数量较少的搅拌器位置上创建统计性不均匀;ii)在两种不同的装货条件下,空的和吸收器之间,以模拟多种现实设备水平的附文。我们的结果显示,在两个运行条件下,在封闭的空间内都获得了两个平行的频道。无线频道的统计特征表现为一致性带宽带宽、路径丢失、延迟扩散和里氏系数,以及宽带频道的容量。人们发现,高反射度环境所支撑的严重的多路径退缩在两个多位多输出频道之间造成不均匀,即使存在重大损失。此外,频道的容量能力在运行条件下都从有限的空间中获得了两个平行的频道,包括高模式的磁带的磁带空间分布,其平均和磁带的磁带结构结构的分布分布,其均度分布是高模式的磁段。