Indoor Positioning System Using a Single-Chip Millimeter Wave Radar

被引:15
|
作者
Li, Wei [1 ]
Chen, Ruizhi [1 ]
Wu, Yuan [1 ]
Zhou, Haitao [1 ]
机构
[1] Wuhan Univ, State Key Lab Informat Engn Surveying Mapping & Re, Wuhan 430072, Peoples R China
关键词
Radar; Millimeter wave communication; Sensors; Doppler radar; Point cloud compression; Estimation; Radar antennas; Doppler velocity; heading estimation; indoor location estimation; millimeter-wave (mmWave) radar; EGO-MOTION ESTIMATION;
D O I
10.1109/JSEN.2023.3235700
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Estimation of indoor location is a key capability for indoor location-based services. Among various solutions, single-chip low-cost millimeter-wave (mmWave) radar as an emerging technology are getting more and more attention due to their inherent advantages such as penetration ability, low-power consumption. Currently, the vast majority of work is focused on hybrid positioning based on mmWave radar with other sensors, and there is a lack of research on single radar indoor positioning. In this article, we propose a novel indoor positioning system based on single-radar sensor, which determines the trajectory by estimating the velocity and heading of moving radar from sparse point clouds. Doppler velocity of detected object can be able to feedback the radar velocity, and for another hand, the proposed Cluster Center Association (CCA) method combined with normal distributions transform (NDT) can be used for heading estimation. In addition, we proposed the motion consistency constraints to enhance the robustness of the system. The experimental results show that the traditional NDT algorithm will fail due to the sparse point cloud and severe indoor multipath, and the proposed algorithm can provide the positioning accuracy within 1 m and the heading estimation error of 3 degrees
引用
收藏
页码:5232 / 5242
页数:11
相关论文
共 50 条
  • [21] A single-chip narrowband frequency domain excisor for a Global Positioning System (GPS) receiver
    Capozza, PT
    Holland, BJ
    Hopkinson, TM
    Landrau, RL
    PROCEEDINGS OF THE IEEE 1999 CUSTOM INTEGRATED CIRCUITS CONFERENCE, 1999, : 549 - 552
  • [22] SINGLE-CHIP VIDEO PROCESSING SYSTEM
    DESOR, HJ
    IEEE TRANSACTIONS ON CONSUMER ELECTRONICS, 1991, 37 (03) : 182 - 189
  • [23] SINGLE-CHIP MONOLITHIC SONAR SYSTEM
    FREDERIKSEN, TM
    HOWARD, WM
    IEEE JOURNAL OF SOLID-STATE CIRCUITS, 1974, SC 9 (06) : 394 - 403
  • [24] MMGraphSLAM: Autonomous indoor positioning based on millimeter Wave GraphSLAM
    Piao, Wenchuan
    Zhao, Xiaohui
    Li, Zan
    MEASUREMENT, 2023, 220
  • [25] AutoPlace: Robust Place Recognition with Single-chip Automotive Radar
    Cai, Kaiwen
    Wang, Bing
    Lu, Chris Xiaoxuan
    2022 IEEE INTERNATIONAL CONFERENCE ON ROBOTICS AND AUTOMATION (ICRA 2022), 2022, : 2222 - 2228
  • [26] Millimeter wave holographic imaging radar system using single irradiator at center of scan aperture
    Cao Z.
    Dou W.
    Su H.
    Dongnan Daxue Xuebao (Ziran Kexue Ban)/Journal of Southeast University (Natural Science Edition), 2011, 41 (04): : 678 - 681
  • [27] An Extended Simulink Model of Single-Chip Automotive FMCW Radar
    Kravchenko, Ivan
    Vertegel, Valeriy
    2019 URAL SYMPOSIUM ON BIOMEDICAL ENGINEERING, RADIOELECTRONICS AND INFORMATION TECHNOLOGY (USBEREIT), 2019, : 368 - 370
  • [28] Collision avoidance system using millimeter-wave radar
    Gongku Jiaotong Keji/Journal of Highway and Transportation Research and Development, 1600, 12 (02):
  • [29] Beamwidth Enhancement of On-Chip Antenna Integrated in Single-chip FMCW Radar Using Periodic Dielectric Lenses
    Syeda, R. Z.
    Adela, B. B.
    van Beurden, M. C.
    van Zeijl, P. T. M.
    Smolders, A. B.
    2017 11TH EUROPEAN CONFERENCE ON ANTENNAS AND PROPAGATION (EUCAP), 2017, : 1170 - 1173
  • [30] Synchronous data collection measuring system using a single-chip computer
    Czebe, Jiri
    Suranek, Pavel
    Tuma, Jiri
    Ziaran, Stanislav
    IFAC PAPERSONLINE, 2019, 52 (27): : 68 - 73