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An Efficient Zero-Forcing Precoding Design for Cognitive MIMO Broadcast Channels

机译:认知MIMO广播信道的高效零强迫预编码设计

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摘要

We consider linear precoding design for an underlay cognitive radio multiple-input multiple-output broadcast channel in the presence of multiple primary users (PUs). Under the assumption of imperfect channel state information (CSI) of the PUs, the objective of this letter is to maximize the sum rate of the secondary system, subject to the power budget at the secondary base station and the interference power constraints at the PUs. The design problem is non-convex, and thus is difficult to solve in general. Herein, we first convert a non-convex constraint related to the imperfect CSI of the PUs into a convex constraint, and then invoke a rank relaxation method to transform the considered problem into a convex–concave problem based on a downlink–uplink duality result. Simulation results are provided to demonstrate the effectiveness and robustness of the proposed design against CSI imperfection.
机译:我们考虑在存在多个主要用户(PU)的情况下,用于底层认知无线电多输入多输出广播信道的线性预编码设计。在PU的不完美信道状态信息(CSI)的假设下,这封信的目的是最大化次级系统的总速率,这取决于次级基站处的功率预算和PU处的干扰功率约束。设计问题是非凸的,因此通常很难解决。在这里,我们首先将与PU的不完全CSI相关的非凸约束转换为凸约束,然后基于下行链路-上行对偶对偶结果调用秩松弛方法将考虑的问题转换为凸凹问题。提供仿真结果以证明所提出的设计针对CSI缺陷的有效性和鲁棒性。

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