Beyond Near-Field: Far-Field Location Division Multiple Access in Downlink MIMO Systems
Haoyan Liu, Caijian Jie, Min Yang, Chengguang Li

TL;DR
This paper proposes a far-field LDMA scheme using FDA and OFDM to exploit distance domain degrees of freedom, significantly enhancing spectral efficiency in wideband MIMO systems, especially in dense and millimeter-wave scenarios.
Contribution
It introduces a novel far-field LDMA method leveraging FDA and OFDM, enabling distance domain beam manipulation and improved spectral efficiency.
Findings
LDMA exploits additional degrees of freedom in the distance domain.
LDMA significantly improves spectral efficiency in narrow sector scenarios.
LDMA maintains element independence even in single-path channels.
Abstract
Exploring channel dimensions has been the driving force behind breakthroughs in successive generations of mobile communication systems. In 5G, space division multiple access (SDMA) leveraging massive MIMO has been crucial in enhancing system capacity through spatial differentiation of users. However, SDMA can only finely distinguish users at adjacent angles in ultra-dense networks by extremely large-scale antenna arrays. For a long time, most research has focused on the angle domain of the space, overlooking the potential of the distance domain. Near-field location division multiple access (LDMA) was proposed based on the beam-focusing effect yielded by near-field spherical propagation model, partitioning channel resources by both angle and distance. To achieve a similar idea in the far-field region, this paper introduces a far-field LDMA scheme for wideband systems based on orthogonal…
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Taxonomy
TopicsAdvanced MIMO Systems Optimization · Full-Duplex Wireless Communications · Advanced Wireless Communication Techniques
