We address the problem of interference leakage (IL) minimization in the $K$-user multiple-input multiple-output (MIMO) interference channel (IC) assisted by a reconfigurable intelligent surface (RIS). We describe an iterative algorithm based on block coordinate descent to minimize the IL cost function. A reformulation of the problem provides a geometric interpretation and shows interesting connections with envelope precoding and phase-only zero-forcing beamforming problems. As a result of this analysis, we derive a set of necessary (but not sufficient) conditions for a phase-optimized RIS to be able to perfectly cancel the interference on the $K$-user MIMO IC.
翻译:我们探讨了在可重新配置的智能表面(RIS)的协助下,将美元用户多投入多产出干涉信道(IC)的干扰渗漏最小化的问题。我们描述了基于区块协调下降的迭代算法,以尽量减少IL的成本功能。问题的重新拟订提供了几何解释,并显示了与信封预编码和只分期零推进波束问题的有趣联系。通过这一分析,我们为逐步优化的RIS提出了一套必要(但不够充分)条件,以便能够完全取消对K美元用户MIMO的干扰。</s>