The problem of the real-time multiple-input multiple-output (MIMO) array control when requirements on capacity performance, out-of-cell interference, and computational efficiency are simultaneously enforced is addressed by means of an innovative hybrid beamforming technique. The synthesis of the excitations of the MIMO system is first re-formulated as that of matching an ideal "hybrid" pattern fitting capacity or low-interference constraints along the angular coordinates. Then, a non-iterative processing scheme is derived for each MIMO beam where numerically-efficient synthesis techniques are profitably combined. Representative results, from an extensive numerical validation, are discussed to show, also comparatively, the advantages and the current limitations of the proposed synthesis method when dealing with different propagation scenarios, number of transmitters/receivers, and noise levels.
翻译:在同时实施能力性能、细胞外干扰和计算效率要求时,实时多投入多重产出(MIMO)阵列控制问题通过创新的混合波束成型技术加以解决,对MOIM系统的引力合成首先重新拟订为匹配理想的“杂交”模式适配能力或角坐标沿线的低干扰制约;然后为每个MIMO束制定非线性处理办法,在这种情况下,数字效率有效的合成技术可以有利地结合起来;讨论代表通过广泛的数字验证的结果,也比较地表明拟议的综合方法在处理不同传播情景、发射机/接收机数目和噪音水平时的优点和目前局限性。