アンチUAVレーダー

他のビデオ
November 04, 2025
カテゴリー 接続: アンチUAVレーダー
概要: DD-R39 Xバンド長距離クワッドセルレーダーは、全天候型の低速・小型・低高度目標の探知と早期警戒のために設計されています。AIと機械学習を活用し、超低誤報率とドローン、ヘリコプターなどの正確な分類を保証します。防衛と境界警備に最適です。
関連製品特性:
  • Fully solid-state, coherent pulse Doppler system for all-weather detection of low, small, slow targets.
  • AI recognition using micro-Doppler signatures and flight path features for ultra-low false alarm rates.
  • Detects and classifies drones, light aircraft, helicopters, triplanes, airships, and balloons.
  • Real-time target positioning with trajectory display and playback on map interface.
  • Built-in data recording and storage for target trajectory and radar status information.
  • Automatic environmental adaptation with machine learning, requiring no manual parameter adjustment.
  • Cloud and rain noise suppression for reliable operation in adverse weather conditions.
  • Flexible parameter configuration for elevation coverage, target update rate, and monitoring range.
FAQ:
  • What types of targets can this radar system detect and classify?
    The DD-R39 radar effectively detects and classifies a diverse range of targets including drones, light aircraft, helicopters, powered triplanes, airships, and airborne balloons using AI recognition technology based on micro-Doppler signatures and flight path features.
  • How does the system perform in adverse weather conditions?
    The radar is equipped with cloud and rain noise suppression capabilities that effectively eliminate interference under adverse weather conditions, ensuring reliable all-weather operation and maintaining detection accuracy.
  • What is the detection range for different types of unmanned aerial vehicles?
    The system offers detection ranges of ≥10Km for UAVs with RCS of 0.01m² and ≥20Km for UAVs with RCS of 0.3m², with a minimum detection altitude of ≤10m and velocity range from 1m/s to 100m/s.
  • Does the system require manual configuration for different environments?
    No, the system incorporates advanced machine learning technology that enables it to autonomously adapt to the current environment and commence operation directly without the need for manual parameter adjustment.