Three-coordinate continuous wave one-dimensional phase-sweep UAV low-altitude target detection system

A detection system and low-altitude target technology, which is applied in the field of three-coordinate continuous wave one-dimensional phase-scan detection system, can solve the problems of beam splitting, signal-to-clutter ratio reduction, elevation angle splitting, etc., to improve distance measurement accuracy, increase detection data rate, Guarantee the effect of detection ability

Active Publication Date: 2022-02-22
LINGBAYI ELECTRONICS GRP
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AI Technical Summary

Problems solved by technology

Low-altitude targets generally fly close to the ground and have a low altitude, so that the target echo signal received by the radar contains a lot of background noise, which greatly reduces the ability of the radar to detect, and sometimes even misjudges and loses the detection of low-altitude and ultra-low-altitude flying targets capability, which brings difficulties and threats to radar detection and survival
When detecting and tracking in the low-altitude field, the radar needs to emit a beam with sufficient energy, which will inevitably cause extremely strong ground-sea clutter, resulting in a decrease in the signal-to-clutter ratio
In addition, low-altitude targets are also affected by multipath effects, which makes the echo signal received by the radar usually a superposition of the direct wave signal and the reflected wave signal. The superimposed vector sum may be enhanced or attenuated, which is extremely unfavorable for detection performance improvement
At the same time, the angle difference between the direct wave and the image echo is very small, and the two are in the same receiving beam of the antenna, and they are a group of strongly coherent signals, which makes the angle measurement problem even more difficult
Therefore, for low-altitude targets, it is a very challenging task to solve the detection and tracking problems
The accumulated number of target echoes obtained is related to the spatial position of the echoes, which makes the spatial energy distribution uneven and causes beam splitting, which brings difficulty to target detection.
In addition, since the same batch of targets may be detected by a single or multiple oblique nods, resulting in a split in azimuth, and the target may be at the critical point of the upper and lower beams, resulting in a split in elevation

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  • Three-coordinate continuous wave one-dimensional phase-sweep UAV low-altitude target detection system

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Embodiment Construction

[0018] refer to figure 1 . In the embodiment described below, the three-coordinate continuous wave one-dimensional phase-sweep UAV low-altitude target detection system mainly consists of cross-linked frequency synthesizer subsystems, transmitting and wave control subsystems, antenna feeder subsystems, and receiving subsystems. , a signal processing subsystem, a data processing and communication control subsystem, an antenna control subsystem and a best embodiment.

[0019] Among them, the frequency synthesizer subsystem provides the system with frequency modulation continuous wave transmission excitation signal, high stability local oscillator signal and clock reference signal. The launch and wave control subsystem fixes and pre-sets the elevation plane beam pointing of each wave position, and uses the frequency modulation continuous wave ranging system to measure the distance of the target, and transmits continuous wave signals to the scanning airspace. Scanning from the lo...

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Abstract

The invention discloses a three-coordinate continuous wave one-dimensional phase-sweep unmanned aerial vehicle low-altitude target detection system, which aims to provide a detection device with high detection data rate and strong anti-interference ability. The present invention is realized through the following technical solutions: the system adopts the frequency modulation continuous wave ranging system to measure the distance of the target, the antenna feeder system converts the radio frequency signal into an electromagnetic wave signal and radiates to space; the receiving subsystem controls the transmitting and wave control subsystem The output echo signal is amplified, frequency-converted and SFC control processing; the signal processing subsystem generates the working sequence of the whole system, measures the three-coordinate vector of the target position, distance, azimuth, and elevation, and solves the frequency modulation continuous wave ranging data of the target signal The data processing and communication control subsystem analyzes the target angle based on the target signal calculated by the signal processing subsystem and the antenna angle information output by the antenna control subsystem, establishes the trajectory of the target movement, controls the working mode of the radar, and detects the three-coordinate target information .

Description

technical field [0001] The invention relates to a three-coordinate continuous wave one-dimensional phase-scan detection system for low-altitude and ultra-low-altitude targets. Especially for the three-coordinate continuous wave one-dimensional phase-scan detection of "low, small and slow" UAV targets. Background technique [0002] Unmanned aerial vehicles (UAVs) belong to a kind of flying objects in the category of general aircraft targets, and there are many types currently being developed. UAVs similar to multi-rotors have been widely popular among the people due to their low price and easy control, and the number has exploded. However, while the drone industry is booming, there are more and more chaos. Many problems such as the use authority of drones and the safety of low-altitude small targets have begun to appear. The monitoring and control of general-purpose aircraft in low-altitude airspace is a worldwide issue. problem. Due to the lack of effective control, "blac...

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01S13/58G01S13/88
CPCG01S13/583G01S13/886
Inventor 刘华林王用宋苏杭冯树祥张杰
Owner LINGBAYI ELECTRONICS GRP
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