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The Study of Aviation Safe Incapacitating Device Based on LED Technology with a Smart-Illumination Sensor Unit.

Jan Leuchter1, Lukas Hon1, Radim Bloudicek1

  • 1Department of Aviation Technology, Faculty of Military Technology, University of Defence, 66210 Brno, Czech Republic.

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Summary

This study introduces the Aviation Safe LED-based Optical Dazzler Equipment (ASLODE), an adaptive optical defense device for aviation personnel. It enhances safety by adjusting light intensity and flash rate based on environmental conditions.

Keywords:
LEDair safetydazzlerhealth and safetylight emitting diodesoptical sensorspower electronicssmart-technology

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Area of Science:

  • Optoelectronics
  • Aviation Safety Engineering
  • Human-Computer Interaction

Background:

  • Protection of aviation personnel from optical threats is crucial.
  • Existing optical defensive devices lack adaptability to varying environmental conditions.
  • Human eyesight characteristics and environmental illumination sensing are key design factors.

Purpose of the Study:

  • To design and implement an adaptive optical defensive device for aviation personnel.
  • To enhance safety and power efficiency through real-time environmental sensing.
  • To develop a device meeting aviation hygienic standards.

Main Methods:

  • Utilized light-emitting diode (LED) technology with constant current regulators.
  • Implemented microcontroller-based adaptation for power, flash duration, and distance.
  • Integrated real-time illumination sensing for dynamic effect control.
  • Developed a smart pulse system adjusting flashing frequency (8-20 Hz) based on light intensity.

Main Results:

  • Demonstrated the effectiveness of the Aviation Safe LED-based Optical Dazzler Equipment (ASLODE) in controlled aircraft scenarios.
  • Validated the device's ability to adapt energy, flash rate, and processing to sensed illumination.
  • Confirmed compliance with aviation hygienic standards for individuals with normal vision.

Conclusions:

  • The ASLODE device provides an effective, adaptable optical defense solution for aviation personnel.
  • Real-time environmental sensing significantly improves device performance and safety.
  • The design meets stringent aviation safety and hygienic requirements.