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AgEagle Aerial Systems Releases Latest eBee VISION Application Software Featuring Updated Autonomous Drone Navigation Without Global Navigation Satellite System (GNSS) Signals

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AgEagle Aerial Systems (NYSE: UAVS) has released an updated version of its eBee VISION application software, featuring groundbreaking autonomous drone navigation capabilities that function without GNSS/GPS signals. The key innovation enables drones to operate in environments where satellite signals are compromised or unavailable, using camera and map-based interface for navigation.

The software update includes several critical features:

  • Optical Flow Stabilization for target tracking
  • Adaptive behavior after GNSS recovery
  • Enhanced ground detection systems
  • Improved pitot tube handling
  • Real-time flight time estimates
  • Optimized cruise speed in windy conditions
  • High-precision landings with STL altitude calibration
  • Gimbal auto-recovery
  • Smart motor temperature management

This advancement particularly benefits defense personnel, public safety agencies, and industrial teams operating in challenging environments such as dense urban centers, critical installations, or contested zones with signal interference.

AgEagle Aerial Systems (NYSE: UAVS) ha rilasciato una versione aggiornata del suo software applicativo eBee VISION, che introduce capacità rivoluzionarie di navigazione autonoma per droni, funzionanti senza segnali GNSS/GPS. L'innovazione principale permette ai droni di operare in ambienti dove i segnali satellitari sono compromessi o assenti, utilizzando un'interfaccia basata su telecamera e mappe per la navigazione.

Aggiornamenti chiave del software includono:

  • Stabilizzazione tramite flusso ottico per il tracciamento degli obiettivi
  • Comportamento adattivo dopo il recupero del segnale GNSS
  • Sistemi di rilevamento del terreno potenziati
  • Miglior gestione del tubo di Pitot
  • Stime in tempo reale della durata del volo
  • Velocità di crociera ottimizzata in condizioni di vento
  • Atterraggi ad alta precisione con calibrazione altimetrica STL
  • Recupero automatico del gimbal
  • Gestione intelligente della temperatura del motore

Questo progresso è particolarmente vantaggioso per il personale della difesa, le agenzie di sicurezza pubblica e i team industriali che operano in ambienti difficili come centri urbani densi, installazioni critiche o zone contese con interferenze di segnale.

AgEagle Aerial Systems (NYSE: UAVS) ha lanzado una versión actualizada de su software de aplicación eBee VISION, que presenta capacidades innovadoras de navegación autónoma para drones que funcionan sin señales GNSS/GPS. La innovación clave permite que los drones operen en entornos donde las señales satelitales están comprometidas o no están disponibles, utilizando una interfaz basada en cámara y mapas para la navegación.

La actualización del software incluye varias funciones críticas:

  • Estabilización por flujo óptico para el seguimiento de objetivos
  • Comportamiento adaptativo tras la recuperación del GNSS
  • Sistemas mejorados de detección del suelo
  • Mejor manejo del tubo Pitot
  • Estimaciones en tiempo real del tiempo de vuelo
  • Velocidad de crucero optimizada en condiciones de viento
  • Aterrizajes de alta precisión con calibración de altitud STL
  • Recuperación automática del gimbal
  • Gestión inteligente de la temperatura del motor

Este avance beneficia especialmente al personal de defensa, agencias de seguridad pública y equipos industriales que operan en entornos desafiantes como centros urbanos densos, instalaciones críticas o zonas en disputa con interferencias de señal.

AgEagle Aerial Systems (NYSE: UAVS)는 GNSS/GPS 신호 없이 작동하는 획기적인 자율 드론 내비게이션 기능을 탑재한 eBee VISION 애플리케이션 소프트웨어의 업데이트 버전을 출시했습니다. 이 핵심 혁신은 위성 신호가 불안정하거나 없는 환경에서도 카메라와 지도 기반 인터페이스를 활용해 드론이 운용될 수 있도록 합니다.

소프트웨어 업데이트에는 다음과 같은 주요 기능들이 포함되어 있습니다:

  • 목표 추적을 위한 광학 흐름 안정화
  • GNSS 신호 복구 후 적응형 동작
  • 향상된 지면 감지 시스템
  • 개선된 피토관 처리
  • 실시간 비행 시간 추정
  • 바람이 부는 조건에서 최적화된 순항 속도
  • STL 고도 보정을 통한 고정밀 착륙
  • 짐벌 자동 복구
  • 스마트 모터 온도 관리

이 기술 발전은 특히 방위군, 공공 안전 기관 및 신호 간섭이 있는 밀집 도시 지역, 중요 시설 또는 분쟁 지역과 같은 까다로운 환경에서 작업하는 산업 팀에 큰 도움이 됩니다.

AgEagle Aerial Systems (NYSE : UAVS) a publié une version mise à jour de son logiciel applicatif eBee VISION, intégrant des capacités révolutionnaires de navigation autonome pour drones fonctionnant sans signaux GNSS/GPS. Cette innovation clé permet aux drones d’opérer dans des environnements où les signaux satellites sont compromis ou indisponibles, en utilisant une interface basée sur la caméra et la cartographie pour la navigation.

La mise à jour du logiciel inclut plusieurs fonctionnalités essentielles :

  • Stabilisation par flux optique pour le suivi des cibles
  • Comportement adaptatif après récupération du GNSS
  • Systèmes améliorés de détection du sol
  • Gestion optimisée du tube de Pitot
  • Estimations en temps réel de la durée de vol
  • Vitesse de croisière optimisée par vent
  • Atterrissages de haute précision avec calibration d’altitude STL
  • Récupération automatique du cardan
  • Gestion intelligente de la température du moteur

Cette avancée profite particulièrement aux personnels de la défense, aux agences de sécurité publique et aux équipes industrielles opérant dans des environnements difficiles tels que les centres urbains denses, les installations critiques ou les zones contestées avec interférences de signal.

AgEagle Aerial Systems (NYSE: UAVS) hat eine aktualisierte Version seiner eBee VISION Anwendungssoftware veröffentlicht, die bahnbrechende autonome Drohnen-Navigationsfunktionen ohne GNSS/GPS-Signale bietet. Die Schlüsselinnovation ermöglicht es Drohnen, in Umgebungen zu operieren, in denen Satellitensignale gestört oder nicht verfügbar sind, und verwendet eine kamera- und kartenbasierte Schnittstelle zur Navigation.

Das Software-Update umfasst mehrere wichtige Funktionen:

  • Optische Flussstabilisierung für Zielverfolgung
  • Adaptives Verhalten nach GNSS-Wiederherstellung
  • Verbesserte Bodenerkennungssysteme
  • Optimierte Pitotrohr-Handhabung
  • Echtzeit-Flugzeit-Schätzungen
  • Optimierte Reisegeschwindigkeit bei windigen Bedingungen
  • Hochpräzise Landungen mit STL-Höhenkalibrierung
  • Automatische Gimbal-Wiederherstellung
  • Intelligentes Motortemperaturmanagement

Dieser Fortschritt kommt insbesondere Verteidigungskräften, öffentlichen Sicherheitsbehörden und industriellen Teams zugute, die in herausfordernden Umgebungen wie dicht besiedelten Stadtzentren, kritischen Anlagen oder umkämpften Zonen mit Signalstörungen arbeiten.

Positive
  • Revolutionary GNSS-independent navigation capability enhances market competitiveness
  • Expanded operational capabilities in challenging environments like urban centers and contested zones
  • Multiple technical improvements increasing drone reliability and safety
  • Enhanced product offering for military and public safety sectors
Negative
  • None.

Insights

AgEagle's GNSS-denied navigation capability addresses a critical vulnerability in drone operations, enhancing reliability in contested environments.

AgEagle's latest software update for the eBee VISION platform introduces navigation without requiring GNSS signals, a significant technical advancement that solves a persistent operational constraint. This capability enables drones to maintain positional awareness using only camera imagery and map referencing when satellite signals are compromised—a common scenario in urban environments, near critical infrastructure, or during signal jamming.

The technical implementation represents a sophisticated integration of computer vision and mapping algorithms that provide operational continuity in denied environments. Unlike conventional drones that become effectively blind without GPS, the updated eBee can maintain mission parameters through visual geo-referencing.

Beyond this headline capability, the update delivers nine additional technical enhancements that collectively improve reliability in challenging conditions:

  • Optical flow stabilization for maintaining target lock during camera zoom
  • Adaptive behavior following position updates
  • Improved ground detection algorithms preventing false landing triggers
  • Enhanced pitot tube handling during takeoff
  • Dynamic flight time and return-to-home estimates
  • Wind-optimized cruise speed for better endurance
  • LIDAR-calibrated precision landings
  • Automatic gimbal recovery from obstructions
  • Thermal management for motors in extreme conditions

For AgEagle's target markets—defense, public safety, and industrial inspection—these features directly address limitations that have restricted drone deployment in complex operational scenarios. The GNSS-denied capability particularly enhances the platform's utility for defense applications, where maintaining navigational control despite electronic countermeasures represents a critical tactical advantage.

eBee's GNSS-independent navigation addresses a critical vulnerability in military drone operations, aligning with DoD priorities for contested environment capabilities.

The introduction of GNSS-denied navigation in AgEagle's eBee VISION platform addresses one of the most significant vulnerabilities in modern tactical drone operations. In contemporary conflicts, GPS jamming and spoofing have become standard electronic countermeasures against unmanned systems, frequently rendering conventional drones ineffective in contested areas.

This update transforms the eBee from a conditionally-dependent intelligence asset into a resilient ISR platform suitable for electromagnetically contested environments. For defense and security operators, this capability substantially increases operational flexibility by enabling missions to proceed in areas previously considered too high-risk for drone deployment.

The map-based positioning system provides a redundant navigation pathway that maintains mission effectiveness when primary navigation systems are compromised. Combined with the new optical target lock feature, the platform can now deliver persistent surveillance of high-value targets despite active electronic interference.

For public safety agencies operating in urban environments, this capability addresses the common "urban canyon" problem where buildings block or reflect GPS signals. Industrial users conducting critical infrastructure inspections near facilities with electromagnetic interference will similarly benefit from more reliable operations.

The development aligns with current Department of Defense priorities emphasizing systems capable of functioning in degraded or denied communications environments. As military procurement increasingly focuses on resilient systems that can maintain effectiveness during electronic warfare, capabilities like GNSS-independent navigation become differentiating factors in platform selection.

Key update provides operators invaluable control and reliability in environments where GNSS/GPS signals are compromised, jammed, or entirely unavailable 

WICHITA, Kan., April 24, 2025 (GLOBE NEWSWIRE) -- AgEagle Aerial Systems Inc. (NYSE: UAVS) (“AgEagle” or the “Company”), a leading provider of best-in-class unmanned aerial systems (UAS) and sensors for military, public safety, and commercial use, announces the launch of its eBee VISION next generation application software featuring a variety of critical updates. Of particular note, is the capability for autonomous position updates with map referencing to provide precise navigation even in GNSS-denied areas where satellite signals are unavailable or unreliable due to various factors. 

AgEagle CEO Bill Irby commented, “Of the many new features provided in our latest software update, overcoming GNSS-denied shortfalls marks a significant leap forward in drone operations especially for defense personnel, public safety agencies and industrial teams working in high-stakes, GNSS-denied environments. Whether operating in dense urban centers, near critical installations, or in contested zones with active signal interference, our global eBee VISION customers can now maintain full navigational command of their drone using only the camera and map-based interface. This feature directly addresses a core challenge faced by tactical and industrial drone operators in today’s complex mission environments. Our technical team will continue to work relentlessly on refinements and ongoing advancements to ensure AgEagle remains at the forefront of UAV innovation.”

Key Advantages of Autonomous Position Control Without GNSS:

  • Operational Continuity in Denied or Degraded Environments: Enables uninterrupted drone navigation when GPS is jammed, spoofed, or blocked—common scenarios in tactical defense and critical infrastructure inspections.
  • Enhanced Mission Flexibility: Supports real-time adjustments to the drone’s perceived position using visual confirmation and mapping, empowering operators to adapt quickly in evolving environments.
  • Situational Resilience: Increases overall reliability of drone-based intelligence, surveillance, and reconnaissance (ISR) operations in hostile or unpredictable conditions.

Additional features announced in the latest software update include:

Optical Flow Stabilization for Target Lock

When locked onto a point of interest, the camera uses visual cues to keep the target centered—even during long zoom-ins or drone movements.

Adaptive Behavior After GNSS Recovery or Visual Repositioning

Seamless transitions after teleportation events. If the drone’s position suddenly updates (due to GNSS recovery or visual geo-referencing), it now intelligently continues its current task or adjusts appropriately.

Improved Ground Detection to Prevent False Landings

Algorithms improved to reduce the risk of false "on-ground" detection during flight, ensuring better performance in low-speed or high-wind conditions.

Improved Pitot Tube Handling at Take-Off

More reliable launches under challenging conditions. Minimized false pitot sensor errors on launch, especially under challenging angles or slight sensor obstruction.

Remaining Flight Time & Return-to-Home (RTH) Estimates

Better mission planning made simple with real-time energy estimates. Live estimates of mission duration and return-to-home time are now available—adjusting dynamically based on real-time wind and power consumption data.

Optimized Cruise Speed in Windy Conditions

Smarter speed, longer missions. The drone now adapts cruise speed based on actual wind intensity, improving endurance without compromising stability.

High-Precision Landings with STL Altitude Calibration

Using LIDAR to calibrate the landing zone’s altitude during STL ensures consistent and accurate touchdown, regardless of altitude drift mid-flight.

Gimbal Auto-Recovery from Obstructions

Resilient against sand and debris. If the gimbal becomes blocked, a new self-clearing mechanism attempts recovery mid-flight—reducing the risk of damage on landing.

Smart Motor Speed Reduction to Prevent Overheating

Climb safely, even in extreme heat. When motors approach overheating thresholds, speed is temporarily reduced to prevent shutdown, preserving the drone in critical conditions.

About AgEagle Aerial Systems Inc.

Through its three Centers of Excellence, AgEagle is actively engaged in designing and delivering best-in-class flight hardware, sensors and software that solve important problems for its customers. Founded in 2010, AgEagle was originally formed to pioneer proprietary, professional-grade, fixed-winged drones and aerial imagery-based data collection and analytics solutions for the agriculture industry. Today, AgEagle is a leading provider of full stack UAS, sensors and software solutions for customers worldwide in the energy, construction, agriculture, and government verticals. For additional information, please visit our website at www.ageagle.com.

Forward-Looking Statements

Certain statements in this press release may constitute “forward-looking statements” within the meaning of the Private Securities Litigation Reform Act of 1995. All statements, other than statements of historical fact, contained in this press release are forward-looking statements. Forward-looking statements contained in this press release may be identified by the use of words such as “anticipate,” “believe,” “contemplate,” “could,” “estimate,” “expect,” “intend,” “seek,” “may,” “might,” “plan,” “potential,” “predict,” “project,” “suggest,” “target,” “aim,” “should,” “will,” “would,” or the negative of these words or other similar expressions, although not all forward-looking statements contain these words. Forward-looking statements are based on AgEagle’s current expectations and are subject to inherent uncertainties, risks and assumptions that are difficult to predict, including risks related to the timing and fulfilment of current and future purchase orders relating to AgEagle’s products, the success of new programs and software updates, the ability to implement a new strategic plan and the success of a new strategic plan. Further, certain forward-looking statements are based on assumptions as to future events that may not prove to be accurate. For a further discussion of risks and uncertainties that could cause actual results to differ from those expressed in these forward-looking statements, as well as risks relating to the business of AgEagle in general, see the risk disclosures in the Annual Report on Form 10-K of AgEagle for the year ended December 31, 2024, and in subsequent reports on Forms 10-Q and 8-K and other filings made with the SEC by AgEagle. All such forward-looking statements speak only as of the date they are made, and AgEagle undertakes no obligation to update or revise these statements, whether as a result of new information, future events or otherwise.

AgEagle Aerial Systems Contacts

Investor Relations:

Email: UAVS@ageagle.com

Media:

Email: media@ageagle.com


FAQ

What is the key feature in AgEagle's (UAVS) latest eBee VISION software update?

The key feature is autonomous drone navigation without GNSS/GPS signals, using camera and map-based interface for precise navigation in signal-denied environments.

How does the new UAVS eBee VISION software handle GNSS signal loss?

It uses autonomous position updates with map referencing to maintain navigation capabilities when GNSS signals are unavailable or compromised.

What improvements does the latest UAVS eBee VISION update bring for flight safety?

It includes improved ground detection, smart motor temperature management, enhanced pitot tube handling, and high-precision landing capabilities.

How does the new eBee VISION software optimize drone performance in challenging conditions?

It features adaptive cruise speed in wind, gimbal auto-recovery, real-time flight estimates, and intelligent behavior after GNSS recovery.
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