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2023 | OriginalPaper | Buchkapitel

Performance Verification System for Navigation Algorithm~Simulation of Flight Evaluation Profile Specified in RTCA DO-334 MOPS~

verfasst von : Kohei Satsuka, Yosuke Sakurai, Masaaki Yanagihara, Sohshi Ohsawa, Takeshi Fujiwara

Erschienen in: The Proceedings of the 2021 Asia-Pacific International Symposium on Aerospace Technology (APISAT 2021), Volume 2

Verlag: Springer Nature Singapore

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Abstract

Shinshu University has been developing a computer simulation-based navigation algorithm verification system. The system performs the final confirmation of a subject navigation algorithm by executing the flight test items specified in Table 2–9 of the RTCA DO-334 MOPS by computer simulation of an aircraft’s flight along a reference trajectory. Generating a high-precision reference trajectory requires many aircraft parameters and is computationally intensive. To alleviate these burdens, we developed a program that generates a simplified trajectory from takeoff to landing that includes turning maneuvers. In this paper, dynamic motions such as pitch up/down and lateral-directional motions such as steady sideslip, which are required in DO-334, were newly incorporated into the trajectory generation program, and inertial navigation and GPS navigation were performed along the output trajectory to confirm the usefulness of the verification system. The obtained navigation outputs were consistent with the characteristics of true data, and confirmed that the influence of flight test maneuvers on the navigation could be evaluated. It was therefore demonstrated that the system can simulate the DO-334-based verification of a navigation algorithm.

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Literatur
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Zurück zum Zitat Minimum Operational Performance Standards (MOPS) for Strapdown Attitude and Heading Reference System (AHRS) RTCA DO-334. Accessed 21 Mar 2012 Minimum Operational Performance Standards (MOPS) for Strapdown Attitude and Heading Reference System (AHRS) RTCA DO-334. Accessed 21 Mar 2012
2.
Zurück zum Zitat Kato K (1982) 航空機力学入門. (in Japanese) Kato K (1982) 航空機力学入門. (in Japanese)
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Zurück zum Zitat Inertial Navigation System TOOLBOX 3.0 (2003) GPSoft LLC Inertial Navigation System TOOLBOX 3.0 (2003) GPSoft LLC
4.
Zurück zum Zitat Ota K, Kawamoto K, Yanagihara M (2019) Performance verification of GPS/INS integrated navigation system and efficiency improvement ~the influence of gravity models on evaluation results~. In: GPS/GNSS symposium, 18 October 2019 Ota K, Kawamoto K, Yanagihara M (2019) Performance verification of GPS/INS integrated navigation system and efficiency improvement ~the influence of gravity models on evaluation results~. In: GPS/GNSS symposium, 18 October 2019
5.
Zurück zum Zitat Satellite Navigation TOOLBOX 3.0 (2007) GPSoft LLC Satellite Navigation TOOLBOX 3.0 (2007) GPSoft LLC
Metadaten
Titel
Performance Verification System for Navigation Algorithm~Simulation of Flight Evaluation Profile Specified in RTCA DO-334 MOPS~
verfasst von
Kohei Satsuka
Yosuke Sakurai
Masaaki Yanagihara
Sohshi Ohsawa
Takeshi Fujiwara
Copyright-Jahr
2023
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-19-2635-8_33

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