On the Limits of Single Anchor Localization: Near-Field Versus Far-Field

被引:0
作者
Emenonye, Don-Roberts [1 ]
Dhillon, Harpreet S. [1 ]
Buehrer, R. Michael [1 ]
机构
[1] Virginia Tech, Bradley Dept Elect & Comp Engn, Wireless VT, Blacksburg, VA 24061 USA
基金
美国国家科学基金会;
关键词
Location awareness; Antenna arrays; Uncertainty; Three-dimensional displays; Array signal processing; Receiving antennas; Transmitting antennas; 6G localization; anchor uncertainty; far-field; near-field; FIM; ORIENTATION ESTIMATION; POSITION; BOUNDS;
D O I
10.1109/LWC.2023.3335611
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
It is well known that a single anchor can be used to determine the position and orientation of an agent communicating with it. However, it is not clear what information about the anchor or the agent is necessary to perform this localization, especially when the agent is in the near-field of the anchor. Hence, in this letter, to investigate the limits of localizing an agent with some uncertainty in the anchor location, we consider a wireless link consisting of source and destination nodes. More specifically, we present a Fisher information theoretical investigation of the possibility of estimating different combinations of the source and destination's position and orientation from the signal received at the destination. To present a comprehensive study, we perform this Fisher information theoretic investigation under both the near and far field propagation models. One of the key insights is that while the source or destination's 3D orientation can be jointly estimated with the source or destination's 3D position in the near-field propagation regime, only the source or destination's 2D orientation can be jointly estimated with the source or destination's 2D position in the far-field propagation regime. Also, a simulation of the FIM indicates that in the near-field, we can estimate the source's 3D orientation angles with no beamforming, but in the far-field, we can not estimate the source's 2D orientation angles when no beamforming is employed.
引用
收藏
页码:540 / 544
页数:5
相关论文
共 13 条
  • [1] Error Bounds for Uplink and Downlink 3D Localization in 5G Millimeter Wave Systems
    Abu-Shaban, Zohair
    Zhou, Xiangyun
    Abhayapala, Thushara
    Seco-Granados, Gonzalo
    Wymeersch, Henk
    [J]. IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2018, 17 (08) : 4939 - 4954
  • [2] Cramer-Rao Lower Bounds of RSS-Based Localization With Anchor Position Uncertainty
    Angjelichinoski, Marko
    Denkovski, Daniel
    Atanasovski, Vladimir
    Gavrilovska, Liljana
    [J]. IEEE TRANSACTIONS ON INFORMATION THEORY, 2015, 61 (05) : 2807 - 2834
  • [3] SPEAR: Source Position Estimation for Anchor Position Uncertainty Reduction
    Angjelichinoski, Marko
    Denkovski, Daniel
    Atanasovski, Vladimir
    Gavrilovska, Liljana
    [J]. IEEE COMMUNICATIONS LETTERS, 2014, 18 (04) : 560 - 563
  • [4] Banagar M., IEEE Trans. Wireless Commun.
  • [5] Reconfigurable Intelligent Surfaces for Localization: Position and Orientation Error Bounds
    Elzanaty, Ahmed
    Guerra, Anna
    Guidi, Francesco
    Alouini, Mohamed-Slim
    [J]. IEEE TRANSACTIONS ON SIGNAL PROCESSING, 2021, 69 : 5386 - 5402
  • [6] RIS-Aided Localization Under Position and Orientation Offsets in the Near and Far Field
    Emenonye, Don-Roberts
    Dhillon, Harpreet S.
    Buehrer, R. Michael
    [J]. IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2023, 22 (12) : 9327 - 9345
  • [7] Fundamentals of RIS-Aided Localization in the Far-Field
    Emenonye, Don-Roberts
    Dhillon, Harpreet S.
    Buehrer, R. Michael
    [J]. IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2024, 23 (04) : 3408 - 3424
  • [8] Localization Technique Considering Position Uncertainty of Reference Nodes in Wireless Sensor Networks
    Kim, Youngjoon
    Lee, Byeongho
    So, Hyoungmin
    Kim, Seong-Cheol
    [J]. IEEE SENSORS JOURNAL, 2018, 18 (03) : 1324 - 1332
  • [9] LaValle S. M., 2006, PLANNING ALGORITHMS, DOI 10.1017/CBO9780511546877
  • [10] Harnessing NLOS Components for Position and Orientation Estimation in 5G Millimeter Wave MIMO
    Mendrzik, Rico
    Wymeersch, Henk
    Bauch, Gerhard
    Abu-Shaban, Zohair
    [J]. IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2019, 18 (01) : 93 - 107