Signal Calibration and Noise Reduction for Software-Defined Radio-Based GPR

被引:8
|
作者
Zhang, Yan [1 ]
Huston, Dryver [2 ]
Xia, Tian [1 ]
机构
[1] Univ Vermont, Dept Elect & Biomed Engn, Burlington, VT 05405 USA
[2] Univ Vermont, Dept Mech Engn, Burlington, VT 05405 USA
关键词
Noise reduction; phase synchronization; ridge regression; software-defined radio (SDRadio); stepped frequency continuous-wave ground-penetrating radar (SFCW GPR);
D O I
10.1109/TIM.2022.3229719
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
This article studies signal calibration, frequency response estimation, and noise reduction for a software-defined radio (SDRadio)-based ground-penetrating radar (GPR). The radar signal generation utilizes the stepped frequency continuous wave (SFCW) method. The signal calibration takes advantage of the dual-channel structure of the SDRadio and solves the incoherent phase problem caused by phase mismatch between the local oscillators (LOs) in the transmitter and the receiver. The frequency response estimation involves two steps: First, the calibration measures the system's intrinsic frequency response. Then it measures the frequency response of the target under the ground surface. The noise effect at the receiver is reduced using the ridge regression method. For performance evaluation, outdoor and indoor experiments are conducted, which show that the GPR A-scan waveform and B-scan image qualities can be effectively improved. Compared with the traditional method, the signal-to-clutter ratio (SCR) of the A-scan waveform is improved by around 7 dB and that of the B-scan image is improved by around 13 dB.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] An emergency communication system based on software-defined radio
    Gianmarco Baldini
    Taj Sturman
    Alberto Dalode
    Andrea Kropp
    Claudio Sacchi
    EURASIP Journal on Wireless Communications and Networking, 2014
  • [32] Software-Defined Radio Based On Cortex-A9
    Wei, Xin
    Qi, Xin
    Xiao, Limin
    Shi, Zhiyuan
    Huang, Lianfen
    2012 7TH INTERNATIONAL ICST CONFERENCE ON COMMUNICATIONS AND NETWORKING IN CHINA (CHINACOM), 2012, : 758 - 761
  • [33] Software Defined Radio-Based ELINT System for Geolocation of RF Emitters
    Reddy, D. Mallikarjuna
    Surender, S. Rani
    Karennagari, Nikhitha
    ADVANCES IN SIGNAL PROCESSING AND COMMUNICATION ENGINEERING, ICASPACE 2021, 2022, 929 : 471 - 481
  • [34] A Software-Defined Radio Based on the Unified SMSE Framework
    Graessle, Robert J.
    Cheng, Chi-Hao
    2011 WIRELESS TELECOMMUNICATIONS SYMPOSIUM (WTS), 2011,
  • [35] An emergency communication system based on software-defined radio
    Baldini, Gianmarco
    Sturman, Taj
    Dalode, Alberto
    Kropp, Andrea
    Sacchi, Claudio
    EURASIP JOURNAL ON WIRELESS COMMUNICATIONS AND NETWORKING, 2014, : 1 - 16
  • [36] Multicore Software-Defined Radio Architecture for GNSS Receiver Signal Processing
    Hurskainen, Heikki
    Raasakka, Jussi
    Ahonen, Tapani
    Nurmi, Jari
    EURASIP JOURNAL ON EMBEDDED SYSTEMS, 2009, (01)
  • [37] Single-chip baseband signal processor for software-defined radio
    Fujitsu Ltd.
    不详
    不详
    不详
    不详
    Fujitsu Sci Tech J, 2006, 2 (240-247):
  • [38] High Dynamic Range (HDR) Signal Processing on Software-Defined Radio
    Do, Phillip, V
    Hernandez, Jesse
    Lu, Zhao
    Garcia, Danson Evan
    Mann, Steve
    2020 IEEE SENSORS, 2020,
  • [39] Single-chip baseband signal processor for software-defined radio
    Nishijima, S
    Saito, M
    Sugiyama, I
    FUJITSU SCIENTIFIC & TECHNICAL JOURNAL, 2006, 42 (02): : 240 - 247
  • [40] Tutorial: Software-Defined Radio Technology
    Cummings, Mark
    Cooklev, Todor
    2007 IEEE INTERNATIONAL CONFERENCE ON COMPUTER DESIGN, VOLS, 1 AND 2, 2007, : 103 - 104