TY - GEN
T1 - Research on the Application of Radio-over-Fiber in Bistatic Scattering Measurements
AU - Wu, Zhenyan
AU - Zhao, Guangcai
AU - Xu, Ding
N1 - Publisher Copyright:
© 2025 IEEE.
PY - 2025
Y1 - 2025
N2 - This paper systematically investigates the impact of two transmission links - radio frequency (RF) cable and fiber-optic - on measurement and imaging results in bistatic scattering tests. Based on a combined approach of electromagnetic simulation and compact range measurements, the performance differences among RF cable, 10-meter fiber, and 200-meter fiber links in bistatic RCS measurement and Paraboloid Back-Projection (PBP) imaging were compared and analyzed at X-band under identical geometric configurations. The results indicate that the imaging results from all three links can clearly resolve the scattering centers, with consistent image quality. Furthermore, time-series analysis of the direct leakage peak revealed phase fluctuations of less than 2° and 4° for the 10-meter and 200-meter fibers, respectively, with amplitude variations within 1 dB, demonstrating good phase stability. Finally, the observed variation of the direct leakage peak provides a potential method for compensating the error caused by the system in the target response. Through systematic comparative experiments, this study validates the feasibility of using radio-over-fiber links to replace traditional RF cables in bistatic scattering tests.
AB - This paper systematically investigates the impact of two transmission links - radio frequency (RF) cable and fiber-optic - on measurement and imaging results in bistatic scattering tests. Based on a combined approach of electromagnetic simulation and compact range measurements, the performance differences among RF cable, 10-meter fiber, and 200-meter fiber links in bistatic RCS measurement and Paraboloid Back-Projection (PBP) imaging were compared and analyzed at X-band under identical geometric configurations. The results indicate that the imaging results from all three links can clearly resolve the scattering centers, with consistent image quality. Furthermore, time-series analysis of the direct leakage peak revealed phase fluctuations of less than 2° and 4° for the 10-meter and 200-meter fibers, respectively, with amplitude variations within 1 dB, demonstrating good phase stability. Finally, the observed variation of the direct leakage peak provides a potential method for compensating the error caused by the system in the target response. Through systematic comparative experiments, this study validates the feasibility of using radio-over-fiber links to replace traditional RF cables in bistatic scattering tests.
KW - Bistatic RCS
KW - Compact Range
KW - Fiber-optic transmission
KW - Paraboloid Back-Projection
KW - RF transmission
KW - Radar Imaging
UR - https://www.scopus.com/pages/publications/105036199907
U2 - 10.1109/ICSE68658.2025.11407561
DO - 10.1109/ICSE68658.2025.11407561
M3 - 会议稿件
AN - SCOPUS:105036199907
T3 - 2025 2nd International Conference on Intelligent Communication, Sensing and Electromagnetics, ICSE 2025
SP - 116
EP - 121
BT - 2025 2nd International Conference on Intelligent Communication, Sensing and Electromagnetics, ICSE 2025
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2nd International Conference on Intelligent Communication, Sensing and Electromagnetics, ICSE 2025
Y2 - 12 December 2025 through 14 December 2025
ER -