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Inertial sensor technology trends

IEEE Sensors Journal · 2001 · Vol. 1(4) · pp. 332–339
N. BarbourG. Schmidt

Abstract

This paper presents an overview of how inertial sensor technology is applied in current applications and how it is expected to be applied in nearand far-term applications. The ongoing trends in inertial sensor technology development are discussed, namely interferometric fiber-optic gyros, micro-mechanical gyros and accelerometers, and micro-optical sensors. Micromechanical sensors and improved fiber-optic gyros are expected to replace many of the current systems using ring laser gyroscopes or mechanical sensors. The successful introduction of the new technologies is primarily driven by cost and cost projections for systems using these new technologies are presented. Externally aiding the inertial navigation system (INS) with the global positioning system (GPS) has opened up the ability to navigate a wide variety of new large-volume applications, such as guided artillery shells. These new applications are driving the need for extremely low-cost, batch-producible sensors.

Geophysics and Sensor TechnologyAdvanced MEMS and NEMS TechnologiesAdvanced Fiber Optic SensorsGyroscopeInertial navigation systemAccelerometerInertial measurement unitArtilleryRing laser gyroscopeGlobal Positioning SystemInertial frame of referenceComputer scienceEngineering

Funding

  • U.S. Department of Defense
  • Charles Stark Draper Laboratory
Citations
575
FWCI
13.86
field-weighted impact
References
24
Percentile
99%
vs. same field & year
Citations per year
Cited by
In-Car Positioning and Navigation Technologies—A Survey
IEEE Transactions on Intelligent Transportation Systems · 2009 · 579 citations
References
Micromachined inertial sensors
Proceedings of the IEEE · 1998 · 1,782 citations
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