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Multi-mode precoding scheme based on interference channel in MIMO-based cognitive radio networks

机译:基于MIMO的认知无线电网络干扰通道的多模预编码方案

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The interference minimization approach to pre-coding is an appropriate scheme to mitigate the interference efficiently while it may cause the capacity loss of the desired channel. On the other hand, the precoding scheme for the maximal capacity of the desired channel improves the capacity of the desired users while it increases the interference power and finally causes the capacity loss of the interfered users. Therefore, we propose a precoding scheme which satisfies these two conflicting goals and manages the interference signal in an interference-limited environment such as a multiple-input multiple-output (MIMO)-based cognitive radio (CR) network. The proposed scheme consists of two steps. The first step nulls out the largest singular value of the interference channel to mitigate the dominant interference signal based on the interference minimization approach. The second step calculates the total system capacity of each mode and selects a mode to maximize the total system capacity. In the second step, each mode consists of the right singular vectors corresponding to the singular values except the largest singular value eliminated in the first step. Simulation results show that the proposed precoding scheme not only efficiently mitigate the interference signal, but also has the best performance in terms of the total system capacity in a MIMO-based CR network.
机译:预编码的干扰最小化方法是有效地减轻干扰的适当方案,同时它可能导致所需信道的容量损耗。另一方面,期望信道的最大容量的预编码方案提高了所需用户的容量,同时增加干扰功率,并且最终导致受干扰用户的容量丢失。因此,我们提出了一种预编码方案,其满足这两个冲突的目标,并管理干扰限制环境中的干扰信号,例如多输入多输出(MIMO)基础的认知无线电(CR)网络。拟议计划包括两个步骤。第一步无效干扰通道的最大奇异值,以基于干扰最小化方法来减轻主导干扰信号。第二步计算每种模式的总系统容量,然后选择模式以最大化总系统容量。在第二步中,每个模式包括与第一步中消除的最大奇异值之外的奇异值相对应的正确奇异矢量。仿真结果表明,所提出的预编码方案不仅有效地减轻干扰信号,而且在基于MIMO的CR网络中的总系统容量方面也具有最佳性能。

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