Which navigation system increased UAS accuracy beyond INS?

Prepare for your Unmanned Aircraft System (UAS) End of Course Test. Explore comprehensive multiple choice questions, including hints and explanations. Sharpen your knowledge and boost confidence for the exam!

Multiple Choice

Which navigation system increased UAS accuracy beyond INS?

Explanation:
The Global Positioning System provides external, real-time position fixes from satellites, which correct the drift inherent in an Inertial Navigation System. An INS estimates position from accelerometers and gyros, but its measurements accumulate error over time, leading to decreasing accuracy if uncorrected. GPS offers precise, absolute position updates, allowing the aircraft to recalibrate its onboard navigation and maintain much higher accuracy than the INS alone. Loran-C is an older radio navigation method with lower accuracy; a radio altimeter only measures altitude above terrain, not horizontal position; the inertial system by itself cannot achieve global accuracy without updates. Therefore GPS increases UAS navigation accuracy beyond what the INS can achieve.

The Global Positioning System provides external, real-time position fixes from satellites, which correct the drift inherent in an Inertial Navigation System. An INS estimates position from accelerometers and gyros, but its measurements accumulate error over time, leading to decreasing accuracy if uncorrected. GPS offers precise, absolute position updates, allowing the aircraft to recalibrate its onboard navigation and maintain much higher accuracy than the INS alone. Loran-C is an older radio navigation method with lower accuracy; a radio altimeter only measures altitude above terrain, not horizontal position; the inertial system by itself cannot achieve global accuracy without updates. Therefore GPS increases UAS navigation accuracy beyond what the INS can achieve.

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