Details
Original language | English |
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Number of pages | 1 |
Publication status | Published - 2019 |
Event | QMSM 2019 - Hannover, Germany Duration: 12 Jun 2019 → 14 Jun 2019 |
Conference
Conference | QMSM 2019 |
---|---|
Country/Territory | Germany |
City | Hannover |
Period | 12 Jun 2019 → 14 Jun 2019 |
Abstract
We compare the deterministic and stochastic errors of cold atom interferometry inertial sensors on the base of a conventional sagnac gyro error model according to the IEEE.
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From Inertial Sensing to Inertial Navigation: A comparison of CAI to conventional INS. / Tennstedt, Benjamin; Schön, Steffen.
2019. Poster session presented at QMSM 2019, Hannover, Lower Saxony, Germany.
2019. Poster session presented at QMSM 2019, Hannover, Lower Saxony, Germany.
Research output: Contribution to conference › Poster › Research
Tennstedt, B & Schön, S 2019, 'From Inertial Sensing to Inertial Navigation: A comparison of CAI to conventional INS', QMSM 2019, Hannover, Germany, 12 Jun 2019 - 14 Jun 2019. https://doi.org/10.13140/RG.2.2.25626.90565
Tennstedt, B., & Schön, S. (2019). From Inertial Sensing to Inertial Navigation: A comparison of CAI to conventional INS. Poster session presented at QMSM 2019, Hannover, Lower Saxony, Germany. https://doi.org/10.13140/RG.2.2.25626.90565
Tennstedt B, Schön S. From Inertial Sensing to Inertial Navigation: A comparison of CAI to conventional INS. 2019. Poster session presented at QMSM 2019, Hannover, Lower Saxony, Germany. doi: 10.13140/RG.2.2.25626.90565
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title = "From Inertial Sensing to Inertial Navigation: A comparison of CAI to conventional INS",
abstract = "We compare the deterministic and stochastic errors of cold atom interferometry inertial sensors on the base of a conventional sagnac gyro error model according to the IEEE.",
author = "Benjamin Tennstedt and Steffen Sch{\"o}n",
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note = "QMSM 2019 ; Conference date: 12-06-2019 Through 14-06-2019",
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AU - Tennstedt, Benjamin
AU - Schön, Steffen
PY - 2019
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N2 - We compare the deterministic and stochastic errors of cold atom interferometry inertial sensors on the base of a conventional sagnac gyro error model according to the IEEE.
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