
doi: 10.2172/922761
Sandia National Laboratories performs many expensive tests using inertial measurement units (IMUs)--systems that use accelerometers, gyroscopes, and other sensors to measure flight dynamics in three dimensions. For the purpose of this report, the metrics used to evaluate an IMU are cost, size, performance, resolution, upgradeability and testing. The cost of a precision IMU is very high and can cost hundreds of thousands of dollars. Thus the goals and results of this project are as follows: (1) Examine the data flow in an IMU and determine a generic IMU design. (2) Discuss a high cost IMU implementation and its theoretically achievable results. (3) Discuss design modifications that would save money for suited applications. (4) Design and implement a low cost IMU and discuss its theoretically achievable results. (5) Test the low cost IMU and compare theoretical results with empirical results. (6) Construct a more streamlined printed circuit board design reducing noise, increasing capabilities, and constructing a self-contained unit. Using these results, we can compare a high cost IMU versus a low cost IMU using the metrics from above. Further, we can examine and suggest situations where a low cost IMU could be used instead of a high cost IMU for savingmore » cost, size, or both.« less
47 Other Instrumentation, Design, Sandia National Laboratories, Performance, Dollars, Gyroscopes, Modifications, Dimensions, Printed Circuits, Flight, Implementation, Metrics, Resolution, Accelerometers, Inertial Navigation, Accuracy, Flight Simulators, Testing Flight
47 Other Instrumentation, Design, Sandia National Laboratories, Performance, Dollars, Gyroscopes, Modifications, Dimensions, Printed Circuits, Flight, Implementation, Metrics, Resolution, Accelerometers, Inertial Navigation, Accuracy, Flight Simulators, Testing Flight
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