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Real-time precision pedestrian navigation solution using Inertial Navigation System and Global Positioning System:

机译:使用惯性导航系统和全球定位系统的实时精密行人导航解决方案:

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Global Positioning System and Inertial Navigation System can be used to determine position and velocity. A Global Positioning System module is able to accurately determine position without sensor drift, but its usage is limited in heavily urbanized environments and heavy vegetation. While high-cost tactical-grade Inertial Navigation System can determine position accurately, low-cost micro-electro-mechanical system Inertial Navigation System sensors are plagued by significant errors. Global Positioning System is coupled with Inertial Navigation System to correct the errors, while Inertial Navigation System itself can be used to provide navigation solution during a Global Positioning System outage. Data from Global Positioning System and Inertial Navigation System can be integrated by extensive Kalman filtering, using loosely coupled integration architecture to provide navigation solutions. In this study, real-time low-cost loosely coupled micro-electro-mechanical system Inertial Navigation System/Global Po...
机译:全球定位系统和惯性导航系统可用于确定位置和速度。全球定位系统模块能够准确地确定位置,而不会出现传感器漂移,但是在城市化程度高的环境和茂密的植被中其使用受到限制。虽然昂贵的战术级惯性导航系统可以准确地确定位置,但低成本的微机电系统惯性导航系统传感器却存在严重误差。全球定位系统与惯性导航系统结合可纠正错误,而惯性导航系统本身可用于在全球定位系统停运期间提供导航解决方案。来自全球定位系统和惯性导航系统的数据可以通过广泛的卡尔曼滤波进行集成,使用松散耦合的集成体系结构来提供导航解决方案。在这项研究中,实时低成本松耦合微机电系统惯性导航系统/全球定位系统...

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