AI-Powered Real-Time FPV Drone Detector
Introduction
Featuring advanced 70MHz-6GHz passive sensing, this system achieves 99.2% detection accuracy for over 400 drone models (DJI, Autel, FPV). Leveraging multi-sensor fusion (RF, radar, thermal), it distinguishes UAVs from birds with 98% precision, reducing false alarms by 99%. Deployed at Heathrow Airport, it provides 10km detection, triggering automated jamming within 2 seconds.
Basic
Function
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Descriptions
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Frequency bandwidth
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70Mhz-6Ghz
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Unattended Mode
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24/7 automatic detect and jam
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System
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WEB based, support android, ios, windows, mac os
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Drone detection
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10km
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Drone location
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DroneID(aeroscope) supported
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Driction Finding
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Yes
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Ingress protection
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IP66
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Size
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Diameter 390mm, height 400mm
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Usage Scenarios of the UAV Detection System
1. Hyper-Accurate AI-Driven FPV Detection
- At the core of our system lies an AI-powered algorithm trained to analyze FPV feeds in real time, enabling instantaneous identification of drones, their flight patterns, and potential risks. Unlike traditional detection methods that rely solely on radar or radio frequency (RF) signals,
- The AI engine continuously adapts to environmental changes, such as lighting conditions and weather variations, ensuring consistent performance day or night.
2. Real-Time FPV Tracking & Interception
- What sets our detector apart is its ability to not only detect drones but also track and intercept them in real time using FPV technology. Once a suspicious drone is identified, the system automatically locks it and start jamming
3. Scalable, User-Friendly, and Cost-Effective
- Our AI-Powered Real-Time FPV Drone Detector is designed for versatility and ease of use. It can be deployed as a standalone unit or integrated into broader security networks, making it suitable for small private properties, large-scale industrial sites, or public spaces. The system’s modular architecture allows for easy expansion—simply add more sensors or cameras to cover larger areas.
- The intuitive interface provides operators with actionable insights at a glance, including threat severity levels, drone specifications, and flight paths. Machine learning algorithms continuously optimize detection parameters, reducing the need for manual adjustments. Additionally, the system offers cost-effective maintenance compared to legacy systems, as AI-driven automation minimizes human intervention and hardware redundancy.