全双工无线本地接入在大系统限制下的可达速率区域

Mikko Vehkaperä, Maksym A. Girnyk, T. Riihonen, R. Wichman, L. Rasmussen
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引用次数: 13

摘要

无线系统的高容量需求可以在网络层面上通过使用密集的小型蜂窝部署来满足,在链路层面上通过频谱重用来提高频谱效率。在这种情况下,我们考虑一个小区域无线电系统,例如微型或飞蜂窝,其中一个全双工接入点同时服务两个半双工设备,一个在下行链路,一个在上行方向。所有收发器都配备了用于空间复用的多个天线。我们没有将研究局限于总速率,而是分析了两个方向的完全可实现速率区域。我们还考虑到由于对收发器损伤的不完全了解而导致的接收机不匹配解码的影响。分析是在大系统限制下使用统计物理中的复制方法进行的,该方法允许包含任意信道输入分布。分析结果表征了接入点的自干扰和设备间干扰对可达速率区域的影响。文中还给出了具体信号方案的数值实例。
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On achievable rate regions at large-system limit in full-duplex wireless local access
High capacity requirements in wireless systems can be met, at the network level, by using dense small cell deployments and, at the link level, by improving spectral efficiency via spectrum reuse. In this context, we consider a small-area radio system, e.g. a pico-or femtocell, where a full-duplex access point serves simultaneously two half-duplex devices, one in downlink and one in uplink direction. All transceivers are equipped with multiple antennas exploited for spatial multiplexing. Instead of limiting the study to the total sum rate, we analyze the complete achievable rate regions of the two directions. We also take into account the effects of mismatched decoding at the receivers due to imperfect knowledge of the transceiver impairments. The analysis is conducted in the large-system limit using the replica method from statistical physics, which allows to encompass arbitrary channel input distributions. The analytical results characterize the effect of self-interference at the access point and inter-device interference on the achievable rate regions. Numerical examples for particular signaling schemes are also given.
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