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The Modular Design and Production of an Intelligent Robot Based on a Closed-Loop Control Strategy
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Small obstacle avoidance sensor.

Richard H Vollmerhausen1

  • 1RHV Consulting, LLC, 760 Jacktown Road, Lexington, VA 24450, USA. vollmer@udel.edu

Thescientificworldjournal
|July 24, 2013
PubMed
Summary

This study presents an eye-safe laser ranging sensor for small unmanned aerial vehicles. The sensor uses structured light for accurate distance measurements up to 30 meters, ideal for covert operations.

Area of Science:

  • Optoelectronics and Sensor Technology
  • Robotics and Autonomous Systems

Background:

  • Small unmanned aerial vehicles (UAVs) require compact and safe sensing solutions.
  • Existing laser ranging technologies may not meet size, safety, or covertness requirements for certain UAV applications.

Purpose of the Study:

  • To describe the design and performance of a novel laser ranging sensor.
  • To demonstrate its suitability for small UAVs and other applications requiring eye-safe, covert distance measurement.

Main Methods:

  • Utilizes a structured-light technique with a diode emitter array and line-scan charge-coupled devices (CCDs).
  • Measures ranges up to 30 meters across 64 field angles within a 90-degree field of view.
  • Designed for eye-safe operation with a laser wavelength invisible to night vision devices.

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Main Results:

  • The sensor achieves reliable range measurements within the specified parameters.
  • Performance is demonstrated for a specific package size, highlighting practical implementation.
  • Eye-safe operation and covert wavelength are confirmed.

Conclusions:

  • The described laser ranging sensor is a viable solution for small UAVs and other niche applications.
  • Its combination of range, field of view, safety, and covertness offers significant advantages.
  • The specific design illustrates effective performance within practical size constraints.