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Capacity of band limited wavefields observed over finite spatial and temporal windows

机译:在有限的时空窗上观察到的有限频带波场的容量

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In this work, we study the channel capacity for broadband transmission in a multipath wavefield observed on the surface of a limited source-free region over a finite temporal window. It has a wide range of applications, such as characterizing broadband distributed or large scale MIMO systems and evaluating the capacity of these systems. In order to address this topic, for given constraints on region size, bandwidth and observation time, the multipath field is characterized as a series of orthogonal basis functions encoded in a finite number of spatial modes. Each of these spatial modes represents an independent channel. We show that for each channel, how the observable time and band limited signals are coupled to a limited region of space. Afterwards, analogous to Shannon's work, we evaluate the capacity of each channel. The derived result indicates that due to the space-frequency coupling relation, for a fixed average signal power over the bandwidth, not all channels have the same capacity. Rather, the lower spatial modes provide large performance gains and channel capacity drops as spatial mode index increases. In addition, different modes provides optimum performance at different radial positions.
机译:在这项工作中,我们研究了在有限的时间窗口内在有限的无源区域的表面上观察到的多径波场中宽带传输的信道容量。它具有广泛的应用,例如表征宽带分布式或大规模MIMO系统以及评估这些系统的容量。为了解决这个问题,对于区域大小,带宽和观察时间的给定约束,将多径场表征为以有限数量的空间模式编码的一系列正交基函数。这些空间模式中的每一个都代表一个独立的通道。我们表明,对于每个通道,可观察的时间和频带受限的信号如何耦合到有限的空间区域。然后,类似于Shannon的工作,我们评估每个通道的容量。得出的结果表明,由于空间-频率耦合关系,对于带宽上固定的平均信号功率,并非所有通道都具有相同的容量。而是,较低的空间模式会提供较大的性能增益,并且随着空间模式索引的增加,信道容量会下降。此外,不同的模式可在不同的径向位置提供最佳性能。

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