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An integrated GPS/INS/baro and radar altimeter system for aircraft precision approach landings

机译:集成的GPS / INS /气压和雷达高度计系统,用于飞机的精确进近着陆

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Currently, the Department of Defense (DOD) and the commercial airline industry are utilizing the Instrument Landing System (ILS) during aircraft landings for precision approaches. The replacement system for the aging ILS was thought to be the Microwave Landing System (MLS). Instead, use of the Global Positioning System (GPS) is now thought to be a viable replacement for ILS precision approaches. The majority of current precision landing research has exploited "stand-alone" GPS receiver techniques. This paper instead explores the possibilities of using an extended Kalman filter (EKF) that integrates an Inertial Navigation System (INS), GPS, Barometric Altimeter, Pseudolite and Radar Altimeter for aircraft precision approaches. This paper shows that integrating the INS, GPS, Barometric Altimeter and Radar Altimeter meets Federal Aviation Administration (FAA) requirements for a Category I precision approach, and additionally integrating a single Pseudolite meets FAA requirements for a category II precision approach.
机译:当前,国防部(DOD)和商业航空业正在飞机着陆期间利用仪表着陆系统(ILS)进行精确进近。老化的ILS的替代系统被认为是微波着陆系统(MLS)。取而代之的是,现在认为使用全球定位系统(GPS)可以替代ILS精确方法。当前大多数的精确着陆研究已利用“独立” GPS接收器技术。相反,本文探索了将扩展惯性导航系统(INS),GPS,气压高度计,伪卫星和雷达高度计集成在一起的扩展卡尔曼滤波器(EKF)用于飞机精确进近的可能性。本文表明,集成INS,GPS,气压高度计和雷达高度计符合I类精度方法的联邦航空管理局(FAA)要求,另外,集成单个伪卫星也符合II类精度方法的FAA要求。

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