Core Technology
Radio Detection and Identification Technology
radio interference
Navigation deception technology
Adaptive radar detection technology
Unmanned aerial vehicle detection and defense system platform
Optoelectronic recognition and tracking technology
Spectrum detection equipment focuses on the up and down remote control and data image transmission signals of unmanned aerial vehicles, conducting comprehensive reconnaissance and precise direction finding operations, thereby achieving efficient detection and timely warning of unmanned aerial vehicles. Its core functions include:
(1) By utilizing advanced technologies such as WVD time-frequency transformation, delay multiplication, and spectral statistics, it is possible to sensitively capture weak signals in harsh environments with complex electromagnetic interference and perform full frequency band scanning without omission. The device is equipped with a high-precision positioning module that can automatically calibrate and achieve precise GPS positioning.
(2) Having unique capabilities for detecting and recording unknown aircraft models, it can accurately frame and record target information of unknown aircraft models in detail, and push it to the management platform in real time, synchronously triggering alarm mechanisms.
(3) Based on the regional distributed grid deployment strategy, a low altitude perception network is constructed to achieve high-precision positioning of targets and large-scale warning effects. For the detected drone signals, the forensic work can be automatically completed, and the spectrum map and target map can be stored to provide strong basis for subsequent analysis.
Spectrum detection equipment focuses on the up and down remote control and data image transmission signals of unmanned aerial vehicles, conducting comprehensive reconnaissance and precise direction finding operations, thereby achieving efficient detection and timely warning of unmanned aerial vehicles. Its core functions include:
(1) By utilizing advanced technologies such as WVD time-frequency transformation, delay multiplication, and spectral statistics, it is possible to sensitively capture weak signals in harsh environments with complex electromagnetic interference and perform full frequency band scanning without omission. The device is equipped with a high-precision positioning module that can automatically calibrate and achieve precise GPS positioning.
(2) Having unique capabilities for detecting and recording unknown aircraft models, it can accurately frame and record target information of unknown aircraft models in detail, and push it to the management platform in real time, synchronously triggering alarm mechanisms.
(3) Based on the regional distributed grid deployment strategy, a low altitude perception network is constructed to achieve high-precision positioning of targets and large-scale warning effects. For the detected drone signals, the forensic work can be automatically completed, and the spectrum map and target map can be stored to provide strong basis for subsequent analysis.
Spectrum detection equipment focuses on the up and down remote control and data image transmission signals of unmanned aerial vehicles, conducting comprehensive reconnaissance and precise direction finding operations, thereby achieving efficient detection and timely warning of unmanned aerial vehicles. Its core functions include:
(1) By utilizing advanced technologies such as WVD time-frequency transformation, delay multiplication, and spectral statistics, it is possible to sensitively capture weak signals in harsh environments with complex electromagnetic interference and perform full frequency band scanning without omission. The device is equipped with a high-precision positioning module that can automatically calibrate and achieve precise GPS positioning.
(2) Having unique capabilities for detecting and recording unknown aircraft models, it can accurately frame and record target information of unknown aircraft models in detail, and push it to the management platform in real time, synchronously triggering alarm mechanisms.
(3) Based on the regional distributed grid deployment strategy, a low altitude perception network is constructed to achieve high-precision positioning of targets and large-scale warning effects. For the detected drone signals, the forensic work can be automatically completed, and the spectrum map and target map can be stored to provide strong basis for subsequent analysis.
Spectrum detection equipment focuses on the up and down remote control and data image transmission signals of unmanned aerial vehicles, conducting comprehensive reconnaissance and precise direction finding operations, thereby achieving efficient detection and timely warning of unmanned aerial vehicles. Its core functions include:
(1) By utilizing advanced technologies such as WVD time-frequency transformation, delay multiplication, and spectral statistics, it is possible to sensitively capture weak signals in harsh environments with complex electromagnetic interference and perform full frequency band scanning without omission. The device is equipped with a high-precision positioning module that can automatically calibrate and achieve precise GPS positioning.
(2) Having unique capabilities for detecting and recording unknown aircraft models, it can accurately frame and record target information of unknown aircraft models in detail, and push it to the management platform in real time, synchronously triggering alarm mechanisms.
(3) Based on the regional distributed grid deployment strategy, a low altitude perception network is constructed to achieve high-precision positioning of targets and large-scale warning effects. For the detected drone signals, the forensic work can be automatically completed, and the spectrum map and target map can be stored to provide strong basis for subsequent analysis.
Spectrum detection equipment focuses on the up and down remote control and data image transmission signals of unmanned aerial vehicles, conducting comprehensive reconnaissance and precise direction finding operations, thereby achieving efficient detection and timely warning of unmanned aerial vehicles. Its core functions include:
(1) By utilizing advanced technologies such as WVD time-frequency transformation, delay multiplication, and spectral statistics, it is possible to sensitively capture weak signals in harsh environments with complex electromagnetic interference and perform full frequency band scanning without omission. The device is equipped with a high-precision positioning module that can automatically calibrate and achieve precise GPS positioning.
(2) Having unique capabilities for detecting and recording unknown aircraft models, it can accurately frame and record target information of unknown aircraft models in detail, and push it to the management platform in real time, synchronously triggering alarm mechanisms.
(3) Based on the regional distributed grid deployment strategy, a low altitude perception network is constructed to achieve high-precision positioning of targets and large-scale warning effects. For the detected drone signals, the forensic work can be automatically completed, and the spectrum map and target map can be stored to provide strong basis for subsequent analysis.
Spectrum detection equipment focuses on the up and down remote control and data image transmission signals of unmanned aerial vehicles, conducting comprehensive reconnaissance and precise direction finding operations, thereby achieving efficient detection and timely warning of unmanned aerial vehicles. Its core functions include:
(1) By utilizing advanced technologies such as WVD time-frequency transformation, delay multiplication, and spectral statistics, it is possible to sensitively capture weak signals in harsh environments with complex electromagnetic interference and perform full frequency band scanning without omission. The device is equipped with a high-precision positioning module that can automatically calibrate and achieve precise GPS positioning.
(2) Having unique capabilities for detecting and recording unknown aircraft models, it can accurately frame and record target information of unknown aircraft models in detail, and push it to the management platform in real time, synchronously triggering alarm mechanisms.
(3) Based on the regional distributed grid deployment strategy, a low altitude perception network is constructed to achieve high-precision positioning of targets and large-scale warning effects. For the detected drone signals, the forensic work can be automatically completed, and the spectrum map and target map can be stored to provide strong basis for subsequent analysis.