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Adaptive Deep Learning 5km Radar Autonomous Operation Adaptive Deep Learning 5km Radar Autonomous Operation
Adaptive Deep Learning 5km Radar Autonomous Operation Adaptive Deep Learning 5km Radar Autonomous Operation
Adaptive Deep Learning 5km Radar Autonomous Operation Adaptive Deep Learning 5km Radar Autonomous Operation

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Adaptive Deep Learning 5km Radar Autonomous Operation

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The product employs deep learning technology, exhibiting a reduced reliance on signal-to-noise ratio. It effectively addresses the challenge of detecting small targets in complex environments.  It endows the radar with adaptive capabilities to various terrain environments, eliminating the need for parameter adjustments after relocation; it can be powered on directly for searching, ensuring user-friendly operation. Additionally, it breaks through traditional radar methods in particular MTI+MTD, CFAR, and conventional clutter map detection. It excels in high angular accuracy (azimuth and elevation), extremely low false alarm rates, stable trajectory tracking, and adaptability to the maneuvering flight of targets in complex environments like urban areas. The system can autonomously operate around the clock.
 
Key Benefits
  • Precision Detection
  • Stable Tracking
  • High Adaptability
  • Deep Learning
  • Future-Proof Design
 
  • R-Eye-100A

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Technical Specifications

Early-warning Detection Range

≥5 km (false alarm rate: 10-6, detection probability: 95%)

Minimum Detection Range

180 m

Angular Coverage Range

Azimuth: 0°to 360° (relative to antenna normal direction)

Elevation: 0°to 30° (horizontal direction)

Resolution

Azimuth: ≤2.8°; Elevation: ≤7.5°; Range: ≤17 m

Accuracy

Azimuth: ≤0.5° (3σ); Elevation: ≤0.5° (3σ); Range: ≤8 m (3σ)

Weight

Radar Frontend ≤ 34 kg; Real-time Data Processing Platform ≤ 15 kg

Power Consumption

Radar Frontend ≤ 220 W; real-time data processing platform ≤200 W

Ingress Protection Rating

IP65

Operating Temperature

-40℃ to 55℃

Product Dimensions

Array ≤ 600 mm × 550 mm (including turntable)


Furthermore, the system boasts autonomous recognition of adverse weather conditions, effectively mitigating meteorological clutter and ensuring uninterrupted operation regardless of environmental factors. With its round-the-clock operational capabilities, it stands as a beacon of reliability and precision, facilitating seamless monitoring and surveillance across various applications and environments.


In summary, the product's array of features including precision detection, stable tracking, high adaptability, and deep learning integration herald a new era of radar technology, poised to redefine the standards of performance and reliability in the field.


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