Clutter Modeling and Characteristics Analysis for GEO Spaceborne-Airborne Bistatic Radar
作者:Shuo Zhang, Shuo Zhang, Shuangxi Zhang, Shuangxi Zhang, Tianhua Guo, Ruiqi Xu, Zicheng Liu, Qinglei Du · 发表于:Remote Sensing · 年份:2025 · DOI:10.3390/rs17071222 · 被引用次数:5 · 研究领域:Radar Systems and Signal Processing、Advanced SAR Imaging Techniques、Radio Wave Propagation Studies
The spaceborne-airborne bistatic radar (SABR) system employs a spaceborne transmitter and an airborne receiver, offering significant advantages, such as wide coverage, outstanding anti-stealth capabilities, and notable resistance to jamming. However, SABR operates in a downward-looking configuration, and due to the separation of the transmitter and receiver, non-side-looking array reception, and the effects of Earth’s rotation, clutter exhibits both spatial-temporal coupling and distance dependence. These factors cause substantial expansion in spatial and temporal frequency domains, leading to severe degradation in radar detection performance for moving targets. This paper establishes an SABR clutter signal model that applies to arbitrary geometric configurations to respond to these challenges. The paper uses this model to analyze the non-side-looking clutter characteristics in a geostationary spaceborne-airborne bistatic radar configuration. Furthermore, the paper investigates the impact of various observation areas and geometric configurations on detection performance, using SCNR loss as the performance index. Finally, this paper gives suggestions on the transceiver’s geometric configuration and the observation area selection.