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首页> 外文期刊>IEEE Transactions on Communications >Optimal Signaling Schemes and Capacities of Non-Coherent Correlated MISO Channels Under Per-Antenna Power Constraints
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Optimal Signaling Schemes and Capacities of Non-Coherent Correlated MISO Channels Under Per-Antenna Power Constraints

机译:每天线功率约束下非相干相关MISO信道的最优信令方案和容量

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This paper investigates the optimal signaling schemes and capacities of non-coherent correlated multiple-input single-output (MISO) channels in fast Rayleigh fading. We consider both channels under per-antenna power constraints as well as channels under joint per-antenna and sum power constraints. For per-antenna power constraint channels, we first establish the convex and compact properties of the feasible sets, and demonstrate the existence of optimal input distribution and the uniqueness of optimal effective magnitude input distribution. By exploiting the solutions of a quadratic optimization problem, we show that the Kuhn-Tucker condition on the optimal inputs can be simplified to a single dimension. As a result, we can apply the Identity Theorem to show the discrete and finite nature of the optimal effective magnitude distribution, with a mass point located at the origin. By using this distribution, we then construct a finite and discrete optimal input vector distribution. The use of this input allows us to determine the capacity gain of MISO over SISO via the phase solutions of a constrained quadratic optimization problem on a sphere, which can be obtained using a proposed penalized optimization algorithm. We also extend the results to MISO channels subject to the joint per-antenna and sum power constraints. Under this consideration, it is shown that not all per-antenna constraints are active. While the finiteness and discreteness of the optimal effective magnitude and the optimal input vector distributions still hold, the optimal phases and the optimal power allocation among the transmit antennas need to be determined simultaneously via a quadratic optimization problem under inequality constraints. These solutions can finally be used to obtain the MISO capacity gain.
机译:本文研究了快速瑞利衰落中非相干相关多输入单输出(MISO)信道的最佳信令方案和容量。我们考虑了在每个天线功率约束下的两个信道,以及在联合的每个天线和总功率约束下的信道。对于每天线功率约束信道,我们首先建立可行集的凸和紧性质,并证明最优输入分布的存在和最优有效幅度输入分布的唯一性。通过利用二次优化问题的解,我们证明了最优输入上的Kuhn-Tucker条件可以简化为一维。结果,我们可以应用恒等定理来显示最优有效幅度分布的离散和有限性质,其中质点位于原点。通过使用这种分布,我们然后构造了一个有限且离散的最佳输入向量分布。通过使用此输入,我们可以通过球上约束二次优化问题的相位解来确定MISO相对于SISO的容量增益,可以使用拟议的罚分优化算法获得该相位解。我们还将结果扩展到受联合每个天线和总功率约束约束的MISO信道。考虑到这一点,表明并非每个天线都有效。尽管最优有效幅度和最优输入矢量分布的有限性和离散性仍然成立,但在不等式约束下,需要通过二次优化问题同时确定发射天线之间的最优相位和最优功率分配。这些解决方案最终可以用于获得MISO容量增益。

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