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Related Concept Videos

Field Application of Global Positioning System01:28

Field Application of Global Positioning System

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The Global Positioning System (GPS) has become an indispensable tool in fieldwork, offering unparalleled precision and efficiency for surveying, navigation, and infrastructure development. By harnessing signals from a constellation of satellites, GPS receivers determine the location of objects with remarkable speed and accuracy, often completing calculations within a second.Advantages of Modern GPS TechnologyContemporary GPS receivers are designed to meet the practical demands of field...
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GPS surveying methods vary in application, accuracy, and data collection techniques, catering to diverse surveying and mapping needs. Static GPS, kinematic GPS, and real-time kinematic (RTK) surveying are widely used. Each technique offers distinct advantages.Static GPS involves placing one receiver at a known reference point and another at the target point. It collects exact positional data by observing multiple satellite ranges over an extended period, achieving centimeter-level accuracy for...
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Surveyors use Global Positioning System (GPS) technology to measure the precise location and elevation of points on Earth. In a recent survey, GPS receivers were used to determine the coordinates and elevations of two park monuments. The process involved careful mission planning, data collection, and correction to ensure accuracy. The survey began with mission planning to identify optimal satellite visibility and minimize Position Dilution of Precision (PDOP). A geodetic control point...
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The Global Positioning System (GPS) revolutionized positioning on Earth, providing precise location data through satellite ranging. The GPS system was developed in 1978 by the U.S. Department of Defense  for military use, and it became available for civilian applications in 1983, transforming fields including navigation, fleet management, and time synchronization for telecommunications systems.GPS consists of satellites in medium Earth orbit, about 20,200 kilometers above the surface,...
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Related Experiment Video

Updated: Feb 23, 2026

Recording Single Neurons' Action Potentials from Freely Moving Pigeons Across Three Stages of Learning
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Global Positioning System-Based Stimulation for Robo-Pigeons in Open Space.

Junqing Yang1,2, Ruituo Huai2, Hui Wang2

  • 1Institute of RF and OE-ICs, Southeast University, Nanjing, China.

Frontiers in Neurorobotics
|September 1, 2017
PubMed
Summary

Researchers developed a new method to evaluate robo-pigeon flight control in open spaces. This system uses a compact global positioning system (GPS) stimulator and PC software for clear trajectory analysis.

Keywords:
bio-robotbrain–computer interfaceflight controlrobo-pigeonstimulator

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Area of Science:

  • Robotics
  • Bio-inspired engineering
  • Animal behavior

Background:

  • Evaluating flight control in bio-inspired robots like robo-pigeons is challenging in confined spaces due to environmental interference.
  • Existing methods often lack the ability to accurately assess flight characteristics in natural, open environments.

Purpose of the Study:

  • To present a novel evaluation method for studying robo-pigeon flight control in fully open space.
  • To overcome limitations of small experimental environments and environmental interference.
  • To enable optimization of microelectric stimulation parameters for improved robo-pigeon design.

Main Methods:

  • Development of a compact, wearable global positioning system (GPS)-based stimulator (38x26x8mm, 18g) for pigeons.
  • Utilizing a PC-based program (Virtual C++) for data analysis and visualization.
  • Recording GPS data and stimulus parameters automatically during flight.

Main Results:

  • The method allows for clear evaluation of robo-pigeon flight trajectories in open space.
  • Demonstrated functional effectiveness through flight control experiments.
  • The system successfully overcomes environmental interference present in smaller experimental setups.

Conclusions:

  • The described method provides a robust and adaptable approach for assessing robo-pigeon flight control.
  • It facilitates the optimization of stimulation parameters to enhance robo-pigeon performance and design.
  • This technique is crucial for advancing the field of bio-inspired robotics and autonomous flight systems.