Tianjing Yunhu | Lingyun Series Ku-band SAR Radar Conducts Flight Test on Keweitai UAV

Browse: 67 Time: 2026-04-20

Suzhou Tianjing Yunhu Intelligent Technology Co., Ltd. focuses on the research and development and application of miniature synthetic aperture radar (SAR) equipment. Among them, the Lingyun series adopts a frequency-modulated continuous wave operating mode, supports strip, spotlight and hybrid imaging modes, and the system supports all-day and all-weather operation. It can penetrate adverse weather conditions such as clouds, rain and smoke, and perform diverse tasks such as land surveying, pipeline inspection, geological disaster monitoring, agricultural and forestry surveys and border patrols.

This flight test utilized a Kewetech UAV. Kewetech's industrial-grade UAVs, boasting high reliability and large payload capacity, employ carbon fiber composite materials, resulting in high structural strength and lightweight design. They feature vertical takeoff and landing, hovering, and autonomous flight path planning, enabling stable flight in complex environments. This combination with the Lingyun series SAR provides an ideal aerial platform for the Lingyun series Ku-band SAR.

During this flight test, our radar system was able to develop refined flight path plans based on mission requirements. The radar, mounted at a predetermined altitude, completed single-polarization data acquisition, obtaining high-resolution SAR images. Combined with the POS data processing and quality assessment module, it outputs standardized data products such as SLC, DOM, and DEM, providing accurate and reliable data support for subsequent remote sensing analysis and decision-making.

Suzhou Tianjing Yunhu will continue to delve into cutting-edge micro SAR technology. The Lingyun series Ku-band radar is a highly mature micro SAR system currently offered by our company, possessing high-precision imaging, single-polarization, and full-polarization acquisition capabilities. It can be equipped with real-time imaging functions to achieve immediate data acquisition. Furthermore, combined with a mature and reliable UAV platform, it can provide high-quality and efficient SAR data acquisition and remote sensing application services to users in the power, defense, marine, water conservancy, and fine mapping industries.

Related Information

Related Information
2026.08.28

Tianjing Yunhu | MiniSAR: Full Polarimetric Imaging Capability

In the field of remote sensing today, synthetic aperture radar (SAR), visible light, and infrared together form a multi-layered observation system. Visible light remote sensing is intuitive and clear, while infrared remote sensing excels at thermal sensing. However, both are passive detection methods, heavily reliant on sunlight or the target's own thermal radiation. Once they encounter cloud cover, nightfall, or rainy/foggy weather, their detection capabilities are significantly reduced or even completely lost.
2026.08.26

Tianjing Yunhu | P-band Airborne SAR Radar System

Low-frequency radars (such as P-band and L-band radars) can "see farther and see more clearly" because of their longer wavelengths, lower attenuation, and reduced sensitivity to stealth coatings. In modern air defense systems, they are key to anti-stealth radars. They can penetrate 1-meter-thick camouflage netting and 3-meter-thick bushes to identify hidden tanks and radar stations, and are less likely to trigger enemy warning systems, demonstrating significant advantages in covert detection.
2026.08.21

Tianjing Yunhu | Miniature SAR Vehicle Target Dataset

Synthetic Aperture Radar (SAR) target detection datasets are a core foundation for training and evaluating deep learning models. These datasets cover various target types, including ships, aircraft, vehicles, bridges, and oil tanks, and are applicable to multiple fields such as military reconnaissance, maritime monitoring, and traffic management. They not only provide high-resolution SAR images but also contain precise annotation information (category, location, size, etc.), ensuring improved algorithm performance.
2026.08.17

Tianjing Yunhu | Miniature SAR Equipped with Fixed-Wing UAV

Today's main focus is on the CW-25E VTOL fixed-wing UAV and the Tianjing Yunhu XiangYun System pulse MiniSAR.

The CW-25E is a pure electric VTOL fixed-wing UAV designed specifically for large-area missions. It has a fuselage length of 2.08 meters, a wingspan of 4.35 meters, and features a twin-boom fused inverted V-tail design, resulting in a compact structure and excellent aerodynamic performance.

The CW-25E has a maximum takeoff weight of 31.58 kg and a payload capacity of 6.6 kg, capable of simultaneously carrying various mission equipment such as SAR, lidar, and electro-optical pods. It boasts a maximum endurance of 150 to 240 minutes, a service ceiling of 6000 meters, a maximum takeoff altitude of 4000 meters, and wind resistance up to level 7. It can stably perform patrol missions in complex terrain and high-altitude areas.
2026.07.18

Tianjing Yunhu | Airborne SAR (Synthetic Aperture Radar) Calibration Capability

Airborne SAR (Synthetic Aperture Radar) calibration refers to the calibration of various parameters of an airborne SAR system using specific methods to eliminate systematic and environmental errors, thereby ensuring the quality of SAR images, positioning accuracy, and the accuracy of inversion parameters. Airborne SAR calibration is mainly divided into three categories: geometric calibration, radiometric calibration, and polarimetric calibration.
2026.07.13

UAV L-band Heavy Orbit Interferometric SAR System: Airborne Verification for Millimeter-Level Deformation Monitoring

Synthetic Aperture Radar Interferometry (InSAR) technology, with its all-weather, 24/7 capability and high sensitivity to surface deformation, has become an important tool for geological hazard monitoring, ground subsidence investigation, and infrastructure health diagnosis. Integrating InSAR technology onto unmanned aerial vehicle (UAV) platforms further overcomes the limitations of long satellite revisit cycles, insufficient maneuverability, and high costs associated with manned operations, providing a new approach for regional, high-frequency, and high-precision deformation monitoring. However, the small size and susceptibility of UAV platforms to airflow disturbances make it difficult to maintain consistent flight paths during repeated flights, posing a significant challenge to double-track interferometry processing.

Online Message

Company Address

Company Address

Room 801, Building 14, No. 135 Zhangji Road, Kunshan Development ZoneView the map
Emaile

Email

tjyh888@139.com
Postal Code

Postal Code

215300
Sales contact information

Sales contact information

  • Sales 1:18252999418 (same WeChat)
  • Sales 2:13126758269 (same WeChat/Whatsapp)
  • Sales 3:15862678208 (same WeChat)
  • Sales 4:15895462772 (same WeChat/Whatsapp)
验证码
Submit

Contact Us

关注我们
关注我们