UAV-borne Mini Synthetic Aperture Radar (MiniSAR)
This lightweight UAV-borne Synthetic Aperture Radar adopts independent FMCW and phased array radar technology, designed for industrial and inspection unmanned aerial platforms. With ultra-compact structure, the standard unit weight ranges from 2.65kg to 6kg, featuring low power consumption, universal mounting interface, plug-and-play installation, compatible with multi-rotor and fixed-wing industrial drones without platform modification.
Equipped with multi-band optional configuration including L, X, Ku band, the radar achieves optimal imaging resolution up to 0.15m. It integrates five core working modes: Strip Mapping for large-area rapid survey, Spotlight Mode for high-precision detailed detection, GMTI moving target tracking, wide-scan imaging, and InSAR interferometric measurement for millimeter-level ground deformation monitoring. It supports full-polarization imaging, and can be integrated with visible light and infrared payloads for synchronous multi-source data acquisition.
Different from optical and infrared imaging equipment, this microwave radar realizes all-day, all-weather detection capability. It works stably at night, heavy fog, rain, haze and low-visibility conditions. The L-band model features vegetation and thin sand penetration performance, capable of detecting concealed targets under foliage camouflage. Designed with wide-temperature industrial adaptability, it operates steadily within -40℃ to 55℃ harsh field environments.
Built-in high-speed airborne processing unit and high-precision inertial navigation fusion algorithm eliminates image distortion caused by drone airflow jitter, realizing on-site real-time image output without post-ground data processing. Supported by self-developed imaging algorithm and AI intelligent interpretation system, it automatically identifies ground targets, monitors surface settlement, and compares image changes efficiently, greatly reducing manual interpretation workload.
Core Advantages
Adopting full self-developed radio frequency hardware and algorithm system, it realizes localized independent control of core components, with shorter delivery cycle and lower operation and maintenance cost compared with imported counterparts. It requires no heavy-load drone carrier, effectively cutting overall flight operation cost. Featuring high stability, low failure rate and customizable frequency band, particle precision and working mode, it supports customized development for special operation scenarios.
Main Application Scenarios
- 3D terrain mapping
- Mine slope & dam deformation early warning
- Oil & power pipeline inspection
- Hidden target border patrol
- Emergency disaster assessment
- Infrastructure safety monitoring
- Forest hidden danger investigation
- Maritime target inspection