Global Positioning System Multipath Reduction with Correlator Beamforming

Abstract

This research e ort investigates the feasibility of beamforming using a single Global Positioning System (GPS) front end. Traditional methods of beamforming use multiple front ends, typically one per antenna element. By enabling a receiver to sample a switched antenna array, the hardware cost of implementing a GPS antenna array can be signi cantly reduced. Similar techniques of reducing the number of receivers have been used by Locata Corporation in the design of their non-GPS positioning systems. However, Locata Corporation's local transmitters provide a signal strength much higher than GPS's signal strength. For this reason, the inclusion of low-noise ampli ers into the GPS based system was investigated. GPS data was collected using a multiple channel antenna array. Simulated switching was then performed to combine the four channels of data in to a single channel of switched data. Next, a GPS receiver using correlator beamforming was developed to apply the necessary phase shift to each data sample and form an antenna beam in the direction of the desired satellite. The switched data was processed and analyzed with the receiver. The results successfully demonstrated the potential for correlator beamforming to be used with GPS signals. Additional experiments were performed with simulated GPS data to further characterize the capability of the receiver.

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Document Details

Document Type
Technical Report
Publication Date
Mar 14, 2014
Accession Number
ADA599107

Entities

People

  • Jason M. Barhorst

Organizations

  • Air Force Institute of Technology

Tags

DTIC Thesaurus Topics

  • Acquisition
  • Air Force
  • Angle Of Arrival
  • Antenna Arrays
  • Artificial Satellites
  • Carrier Frequencies
  • Data Sets
  • Department Of Defense
  • Engineering
  • Global Navigation Satellite Systems
  • Global Positioning Systems
  • Governments
  • Low Noise
  • Low Noise Amplifiers
  • Navigation
  • Simulators
  • United States Government

Fields of Study

  • Engineering

Readers

  • Civilian Systems Systems Program Capability Development and Upgrade Support Activity Expense and Pay Management.
  • Distributed Systems and Data Platform Development
  • Radar Systems Engineering.

Technology Areas

  • Space