TY - GEN
T1 - Validation of a High-Precision Phase Synchronization Approach for Bi-Static SARs Through Universal Electronic Measuring Instruments
AU - Wang, Guangshen
AU - Zhou, Peng
AU - Zhang, Zhenhua
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - Bistatic synthetic aperture radar (BiSAR) system faces significant phase synchronization challenges due to its distributed platform. This paper theoretically analyzes the working principle of a bidirectional synchronization link and proposes a method for extracting compensation phase using the single frequency continuous wave signals. A high-precision phase synchronization compensation algorithm is applied in imaging simulations to compare results under different frequency source conditions, verifying the algorithm's accuracy. Finally, a bistatic SAR phase synchronization system is constructed with universal electronic instruments, and phase synchronization experiments using single frequency continuous wave signals are conducted. Experimental results demonstrate that the system effectively verifies phase synchronization accuracy, providing valuable references for subsequent engineering design.
AB - Bistatic synthetic aperture radar (BiSAR) system faces significant phase synchronization challenges due to its distributed platform. This paper theoretically analyzes the working principle of a bidirectional synchronization link and proposes a method for extracting compensation phase using the single frequency continuous wave signals. A high-precision phase synchronization compensation algorithm is applied in imaging simulations to compare results under different frequency source conditions, verifying the algorithm's accuracy. Finally, a bistatic SAR phase synchronization system is constructed with universal electronic instruments, and phase synchronization experiments using single frequency continuous wave signals are conducted. Experimental results demonstrate that the system effectively verifies phase synchronization accuracy, providing valuable references for subsequent engineering design.
KW - high-precision
KW - instrument experiment
KW - phase synchronization
KW - synchronization link
UR - https://www.scopus.com/pages/publications/105004655597
U2 - 10.1109/ICVISP64524.2024.10959420
DO - 10.1109/ICVISP64524.2024.10959420
M3 - 会议稿件
AN - SCOPUS:105004655597
T3 - 2024 IEEE 8th International Conference on Vision, Image and Signal Processing, ICVISP 2024
BT - 2024 IEEE 8th International Conference on Vision, Image and Signal Processing, ICVISP 2024
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 8th IEEE International Conference on Vision, Image and Signal Processing, ICVISP 2024
Y2 - 27 December 2024 through 29 December 2024
ER -