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DoF analysis of the K-user MISO broadcast channel with hybrid CSIT

机译:混合CSIT对K用户MISO广播频道的DoF分析

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We consider a K-user multiple-input single-output (MISO) broadcast channel (BC) where the channel state information (CSI) of user i(i = 1, 2, ..., K) may be either instantaneously perfect (P), delayed (D) or not known (N) at the transmitter with probabilities λ, λ and λ, respectively. In this setting, according to the three possible CSIT for each user, knowledge of the joint CSIT of the K users could have at most 3 states. Although the results by Tandon et al. show that for the symmetric two user MISO BC (i.e., λ = λ, ∀ ∈ {1, 2}, Q ∈ {P, D, N}), the Degrees of Freedom (DoF) region depends only on the marginal probabilities, we show that this interesting result does not hold in general when K ≥ 3. In other words, the DoF region is a function of all the joint probabilities. In this paper, given the marginal probabilities of CSIT, we derive an outer bound for the DoF region of the K-user MISO BC. Subsequently, we investigate the achievability of the outer bound in some scenarios. Finally, we show the dependence of the DoF region on the joint probabilities.
机译:我们考虑一个K用户多输入单输出(MISO)广播信道(BC),其中用户i(i = 1、2,...,K)的信道状态信息(CSI)可能是瞬时完美的( P),延迟(D)或未知(N)在发射机处的概率分别为λ,λ和λ。在此设置中,根据每个用户的三个可能的CSIT,K个用户的联合CSIT的知识最多可以具有3个状态。虽然结果由丹顿等。表明对于对称的两个用户MISO BC(即λ=λ,∀∈{1,2},Q∈{P,D,N}),自由度(DoF)区域仅取决于边际概率,我们表明,当K≥3时,通常不会保持这种有趣的结果。换句话说,自由度区域是所有联合概率的函数。在本文中,考虑到CSIT的边际概率,我们导出了K用户MISO BC的DoF区域的外边界。随后,我们研究了在某些情况下外边界的可实现性。最后,我们显示了DoF区域对联合概率的依赖性。

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