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A comparison of a mechanically stabilized gyrocompass and a GPS-aided inertial navigation system

机译:机械稳定的Gyrocompass和GPS辅助惯性导航系统的比较

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The ability to sense ship's motion accurately is critical to the performance of Naval Oceanographic Office survey missions. Various instruments have been used over the years to provide survey mission equipment with information about ship's roll,pitch, heading, and vertical motion. Typically the cost and complexity of sensor systems used are directly proportional to the accuracy required.Recent advances have been made in Global Positioning System (GPS) and Inertial Navigation System technologies, which can be combined to produce less complex, more reliable, highly accurate sensors. The Naval Oceanographic Office has deployed such a system on its hydrographic survey ships and hydrographic survey launches. This paper will present a comparison of data collected from this system and an MK 29 gyrocompass while both were operating under actual survey conditions. The impact of short-term loss ofGPS data on system performance will also be explored.
机译:准确感知船舶运动的能力对于海军海洋局调查任务的表现至关重要。多年来使用了各种仪器,以提供有关船舶滚动,音高,标题和垂直运动的信息。通常,所使用的传感器系统的成本和复杂性与所需的准确性成正比。已经在全球定位系统(GPS)和惯性导航系统技术中进行了预付款,这可以组合以产生更不重要的,更可靠,高度精确的传感器。海军海洋办公室已部署在其水文调查船上和水文调查发布的这种系统。本文将显示从该系统收集的数据和MK 29 GyroCompass的数据进行比较,而两者都在实际调查条件下运行。还将探讨短期损失对系统性能的影响。

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