On the capacity of a class of dual-band interference channels

Subhajit Majhi, P. Mitran
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引用次数: 2

Abstract

We consider a two-transmitter two-receiver dual-band Gaussian interference channel (GIC) which is motivated by the simultaneous use of both the conventional microwave band and the unconventional millimeter wave (mm-wave) band in future wireless networks where the traditional microwave band is complemented by additional spectrum in the mm-wave band. A key modeling feature of the mm-wave band is that due to severe path loss and relatively small wavelength, it must be used with highly directional antennas, and thus the transmitter is able to transmit to its intended receiver with negligible to no interference to other receivers. For this model, we derive some sufficient conditions on the channel gains under which the capacity of this type of dual-band GIC is determined. Specifically, these conditions are classified as when microwave band channel gains have (a) weak interference, i.e., both the cross channel gains are less than 1 and (b) mixed interference, i.e., only one of the cross channel gains is less than 1, while the channel gains in the dual-band GIC satisfy certain additional conditions in each case.
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一类双频干扰信道的容量
我们考虑在未来无线网络中同时使用传统微波频段和非常规毫米波(毫米波)频段的双发射双接收双频高斯干扰信道(GIC),其中传统微波频段由毫米波频段的额外频谱补充。毫米波波段的一个关键建模特征是,由于严重的路径损耗和相对较小的波长,它必须与高度定向的天线一起使用,因此发射器能够在对其他接收器可以忽略不计或没有干扰的情况下传输到其预期的接收器。对于该模型,我们给出了确定这种双频GIC容量的信道增益的几个充分条件。具体来说,这两种情况分为微波波段信道增益存在(a)弱干扰,即交叉通道增益均小于1和(b)混合干扰,即只有一个交叉通道增益小于1,而双频GIC中的信道增益在每种情况下都满足某些附加条件。
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