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Development of Real-Time PPP-Based GPS/INS Integration System Using IGS Real-Time Service for Hydrographic Surveys

机译:使用IGS实时服务的水文勘测开发基于PPP的实时GPS / INS集成系统

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摘要

The multibeam echosounding technique is used to provide seafloor mapping at a relatively high-quality level and requires an accurate positioning and orientation system. Integration of a global positioning system (GPS) and an inertial navigation system (INS) is widely used for positioning and orientation control and is performed by using an inertial unit integrated with a real-time kinematic (RTK) GPS solution with two GPS receivers to provide the required accuracy. However, the RTK-based GPS/INS system is presently limited to a distance of approximately 10 km and cannot be used for offshore hydrographic surveys. Recently, precise-point positioning (PPP) technology has shown promise toward the development of an autonomous GPS solution for positioning applications in which only one GPS receiver is used. This paper investigates a real-time PPP-based GPS/INS integrated system position and orientation solution using the international GPS service (IGS) real-time service (RTS) for hydrographic surveys. To meet this objective, the real-time IGS-RTS PPP-based GPS solution is integrated with the INS solution. It is shown that the real-time IGS-RTS PPP-based GPS/INS integration system fulfills International Hydrographic Organization (IHO) special-order 1a, 1b, and 2 requirements at the 95% confidence level and can be used for onshore and offshore hydrographic surveys.
机译:多波束回波探测技术用于以相对较高的质量水平提供海底贴图,并且需要精确的定位和定向系统。全球定位系统(GPS)和惯性导航系统(INS)的集成被广泛用于定位和方向控制,并且是通过将惯性单元与带有两个GPS接收器的实时运动(RTK)GPS解决方案集成在一起来执行的,提供所需的准确性。但是,基于RTK的GPS / INS系统目前限于大约10 km的距离,不能用于海上水文勘测。最近,精确点定位(PPP)技术已显示出对开发自动GPS解决方案的希望,该解决方案用于仅使用一个GPS接收器的定位应用。本文研究了使用国际GPS服务(IGS)实时服务(RTS)进行水文测量的基于PPP的实时GPS / INS集成系统位置和方向解决方案。为了实现此目标,将基于IGS-RTS PPP的实时GPS解决方案与INS解决方案集成在一起。结果表明,基于IGS-RTS PPP的实时GPS / INS集成系统以95%的置信度满足了国际水文组织(IHO)的1a,1b和2特殊要求,可用于陆上和海上水文调查。

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