As massive multiple-input multiple-output (MIMO) becomes popular, direction of arrival (DOA) measurement has been made a real renaissance due to the high-resolution achieved. Thus, there is no doubt about DOA estimation using massive MIMO. The purpose of this paper is to describe its basic principles and key techniques, to present the performance analysis, and to appreciate its engineering applications. It is anticipated that there are still many challenges in DOA estimation using massive receive MIMO, such as high circuit cost, high energy consumption and high complexity of the algorithm implementation. New researches and breakthroughs are illustrated to deal with those problems. Then, a new architecture, hybrid analog and digital (HAD) massive receive MIMO with low-resolution ADCs, is presented to strike a good balance among circuit cost, complexity and performance. Then, a novel three-dimensional (3D) angle of arrival (AOA) localization method based on geometrical center is proposed to compute the position of a passive emitter using single base station equipped with an ultra-massive MIMO system. And, it can achieve the Cramer-Rao low bound (CRLB). Here, the performance loss is also analyzed to quantify the minimum number of bits. DOA estimation will play a key role in lots of applications, such as directional modulation, beamforming tracking and alignment for 5G/6G.
翻译:随着大规模多重投入多重产出(MIMO)的流行,抵达方向的测量由于实现的高分辨率而真正实现了复兴。因此,对于使用大型MIMO的DA估算,毫无疑问地使用大型IMO进行DA估算。本文件的目的是描述其基本原则和关键技术,提出绩效分析,并欣赏其工程应用。预计使用大型接收IMO的DA估算中仍然有许多挑战,如高电路成本、高能源消耗和算法执行的高度复杂性。展示了处理这些问题的新研究和突破。然后,新的结构、混合模拟和数字(HAD)大规模接收低分辨率ADC的MIMO,介绍的目的是在电路成本、复杂度和性能之间取得良好的平衡。然后,根据几何测量中心提出一个新的三维(3D)抵达角度(AOA)本地化方法,以计算被动发射者的位置,使用配备超质量MIMIMO系统的单一基地站。然后,它可以实现Cramer、混合模拟和数字(HA)和低分辨率方向的MODO-LA最低方向。然后,将分析G-D-D-D-D-D-D-D-D-D-D-L-D-D-L-D-S-I-D-S-I-I-I-IAR-IAR-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-I-