tecnologia

Tecnologia

Pilares da Tecnologia Central

Os nossos sistemas de radar são construídos sobre uma arquitetura unificada de quatro camadas. Esta metodologia de co-design de cima para baixo garante que o nosso hardware e software funcionem em perfeita sinergia, maximizando a utilização de recursos e desbloqueando todo o potencial do radar desde a base.

A Three-Layer Technology Architecture

From Hardware Foundation to Intelligent Fusion — Built for the Most Demanding Missions

  • Underlying Architecture

    Underlying Architecture

    This system takes the AESA active phased array hardware as its core carrier, equipped with DBF digital beamforming and MIMO multi-channel transceiving technologies, to build a highly reliable radar hardware foundation, providing underlying support for subsequent signal processing, target detection and multi-sensor fusion.

  • Algorithm Empowerment

    Algorithm Empowerment

    Serving as the "brain" of our systems, this layer filters truth from noise. Driven by proprietary algorithms like Adaptive Clutter Suppression and Track-Before-Detect (TBD), it ensures stable operation and maintains exceptionally low false alarm rates even against heavy background clutter and dense, weak targets.

  • Integrated Value Enablement

    Integrated Value Enablement

    Delivering full detect-to-respond capability. By integrating radar-guided Steer-to-Cue with multi-spectrum imaging, it bridges wide-area warning and precise visual confirmation, forming a closed-loop solution adaptable to diverse land, maritime and low-altitude scenarios.

Core Technology Capabilities

Driving Innovation from Hardware Architecture to Intelligent Algorithms

  • AESA & DBF Architecture

    AESA & DBF Architecture

    The foundation of our superior detection performance. Active Electronically Scanned Array (AESA) technology eliminates mechanical moving parts, ensuring extreme reliability and agile beam steering. Combined with Digital Beamforming (DBF), it enables high-precision, rapid scanning, and robust multi-target tracking even in heavy interference environments.

  • MIMO Radar Technology

    MIMO Radar Technology

    MIMO technology leverages spatial, temporal, and frequency dimensions to significantly enhance resolution. This advanced processing is particularly effective at detecting ultra-slow targets (down to 0.2m/s) and lateral movements, overcoming the fundamental limitations of traditional radar systems.

  • Adaptive Clutter Suppression

    Adaptive Clutter Suppression

    The key to achieving an exceptionally low false alarm rate. Our algorithms dynamically learn environmental signatures—such as swaying trees, ocean waves, or heavy rain—and automatically adjust filters in real time, ensuring stable extraction of weak target signals against severe background clutter.

  • Track-Before-Detect (TBD)

    Track-Before-Detect (TBD)

    When the signal-to-noise ratio is low or targets are dense, our TBD algorithm performs multi-scan tracking correlation and energy accumulation before making a detection decision. This drastically improves the success rate of detecting and tracking faint, dense targets in complex scenarios.

  • Multi-Spectrum Fusion Imaging

    Multi-Spectrum Fusion Imaging

    By fusing high-definition visible light with infrared thermal imaging, we leverage the strengths of both spectrums. This complementary approach guarantees clear target observation and identification day or night, through fog, smoke, or complete darkness.

  • Intelligent Target Auto-Tracking

    Intelligent Target Auto-Tracking

    Integrating advanced acquisition algorithms with high-precision servo control, our optical systems automatically and continuously track high-speed, highly maneuverable targets—either autonomously or under direct radar guidance—while recording vital video evidence.

  • Radar-EO Intelligent Slew-to-Cue

    Radar-EO Intelligent Slew-to-Cue

    Through standardized interfaces, real-time radar data automatically drives electro-optical cameras to slew and lock onto detected targets. This seamless transition from wide-area surveillance to precise visual confirmation closes the loop from "detect" to "identify."

  • Miniaturized & High-Reliability Design

    Miniaturized & High-Reliability Design

    By breaking through TR module miniaturization and high-density integration, our modular designs drastically reduce volume, weight, and power consumption without sacrificing performance, ensuring easy transport, rapid deployment, and rugged reliability in harsh environments.

Computação de Alto Desempenho

Engineered for Uncompromising Speed, Precision, and Durability

  • Tecnologia

    Processamento de Sinal de Ultra Baixa Latência

    Our systems achieve sub-second automated guidance from radar detection to electro-optical locking. This "detect-to-identify" closed loop is powered by high-speed radar data refresh rates, intelligent Slew-to-Cue algorithms, and high-torque servo systems responding at 100°/s². Supported by a dedicated data link with ≤7ms transmission latency and a microservices-based software platform, we ensure instantaneous command execution, making it impossible for fast-moving targets to evade our continuous tracking.

  • Tecnologia

    High-Density Target Recognition

    We combine high-resolution AESA and MIMO hardware with advanced algorithms to maintain order in chaotic environments. Our Track-Before-Detect (TBD) and multi-dimensional fusion algorithms track hundreds of targets simultaneously without confusing intersecting trajectories. By fusing radar kinematics with multi-spectrum visual data and AI analytics, we create a unified situational awareness map that delivers high-confidence threat identification, even against dense drone swarms or clustered ground targets.

  • Tecnologia

    Extreme Environmental Reliability

    Built to operate flawlessly in the world's most unforgiving conditions. Our hardware features a wide operating temperature range (-40℃ to +55℃), IP67 dust and water resistance, and select electro-optical units achieving C5-M marine-grade anti-corrosion certification for coastal deployments. Beyond physical ruggedness, our adaptive clutter suppression algorithms filter out environmental noise like swaying trees, ocean waves, and heavy rain. Combined with solid-state components and built-in surge protection, we guarantee 24/7 mission-critical availability.

Generalização & Abertura

Um Sistema para Múltiplos Cenários, Implantado com Facilidade

  • Tecnologia

    Platform Generalization: Build Once, Deploy Anywhere

    Built on the standardized DF300 architecture, our systems offer unparalleled adaptability. By combining a unified technical foundation with specialized service modules, we can rapidly customize solutions for diverse scenarios—from anti-UAV defense and border surveillance to forest fire warning. With flexible deployment options (local, private, or public cloud) and native support for multi-level cascading, the platform scales effortlessly from a single checkpoint to a nationwide security network.

  • Tecnologia

    System Openness: Seamless Integration & Expansion

    Midradar systems are designed as open ecosystems, breaking down vendor lock-in. We support standardized protocol integration (GB/T 28181, ONVIF, RTSP) for diverse sensors and effectors from multiple brands. Beyond hardware, we provide rich Restful APIs and SDKs for deep secondary development, while our IAS100 AI platform allows for the plug-and-play integration of proprietary or third-party algorithms, ensuring your security infrastructure continuously evolves with emerging targets.

A Diferença do Midradar

Tecnologia

Tecnologia em Ação

De Código Avançado a Vantagem no Mundo Real

Tecnologia

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