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    • 2. 发明授权
    • 3D navigation aid system and display for same
    • 3D导航辅助系统和显示相同
    • US08576093B2
    • 2013-11-05
    • US12870663
    • 2010-08-27
    • Laurent FlotteGabrielle DeBritoChristian NouvelNicolas Marty
    • Laurent FlotteGabrielle DeBritoChristian NouvelNicolas Marty
    • G08G5/04
    • G01C23/00G08G5/0021G08G5/0086G08G5/045
    • The invention relates to an aircraft navigational aid system with 3D display including an anti-collision device, with means of storing data representing obstructions, means for calculating a representation of the obstructions in a three-dimensional space and a device for displaying the obstructions data in three dimensions. The system includes means for augmenting the display of the representation of the area of hazardous obstructions with at least two indicator objects for the said area of hazardous obstructions disposed together in such a manner as to form a third object targeting the localization of the point in the area of hazardous obstructions closest to the aircraft. The invention also relates to the method of display of the indicator objects in a three-dimensional display.
    • 本发明涉及一种具有3D显示器的飞行器导航辅助系统,其包括防冲突装置,具有存储表示障碍物的数据的装置,用于计算三维空间中的障碍物的表示的装置和用于显示障碍物数据的装置 三维。 该系统包括用于增加危险障碍物区域的表示的显示的装置,其中至少两个用于所述危险障碍物区域的指示物体一起放置在一起,以便形成针对该点在 最接近飞机的危险障碍物区域。 本发明还涉及在三维显示器中显示指示物体的方法。
    • 3. 发明授权
    • Flight management system of an unmanned aircraft
    • 无人机飞行管理系统
    • US08515593B2
    • 2013-08-20
    • US13080372
    • 2011-04-05
    • Nicolas MartyFrançois CoulmeauXavier Boone
    • Nicolas MartyFrançois CoulmeauXavier Boone
    • G05D1/00
    • G05D1/0022
    • A flight management system of an unmanned aircraft linked to a control station by communication means includes: a first set of a number N of successive navigation functions (iND with i=1, . . . N) remotely situated within the control station, a control function on board the aircraft, generating, from guidance setpoints, commands intended to control the aircraft so that it observes the guidance setpoints, and a second set of a number N of successive navigation functions (iNE, with i=1, . . . , N) on board the aircraft, and configuration means, capable of performing a combination of a number N of successive functions, each of the successive functions being chosen from the first and second sets, said combination of successive functions generating the guidance setpoints transmitted to the onboard control function.
    • 通过通信装置链接到控制站的无人飞行器的飞行管理系统包括:远程位于控制站内的N个连续导航功能(iND,i = 1,...)的第一组,控制 在飞行器上的功能,从指导设定点产生用于控制飞机的命令,以使其观察到指导设定点,以及第二组连续导航功能(iNE,i = 1,..., N),以及配置装置,能够执行N个连续功能的组合,每个连续功能是从第一组和第二组中选择的,所述连续功能的组合产生传送给 车载控制功能。
    • 5. 发明授权
    • Air navigation aid method and system making it possible to maintain vertical margins
    • 空中导航辅助方法和系统可以保持垂直边距
    • US08145365B2
    • 2012-03-27
    • US12487919
    • 2009-06-19
    • Laurent FlotteNicolas MartyAurélie Sallier
    • Laurent FlotteNicolas MartyAurélie Sallier
    • G05D1/00
    • G05D1/0646
    • The invention relates to a calculation method for an aircraft navigation aid system making it possible to maintain a vertical safety margin with an obstruction profile, the aircraft comprising a navigation system, an automatic piloting system, a database system and a display device, characterized in that the method comprises the following steps: calculation of an obstruction altitude profile, calculation of a vertical safety margin with respect to the obstruction profile, of a plurality of vertical safety trajectories and of the respective flight setpoints for the aircraft to execute the trajectories, selection of the flight setpoints making it possible to maintain the aircraft as close as possible to the obstruction profile while maintaining between the aircraft and the obstruction profile at least the vertical safety margin, filtering of the flight set point values so that the variation of the values of the setpoints does not exceed a variation difference in a duration predefined in the system.
    • 本发明涉及一种用于航空器导航辅助系统的计算方法,使得可以保持具有障碍物轮廓的垂直安全裕度,飞行器包括导航系统,自动驾驶系统,数据库系统和显示装置,其特征在于: 该方法包括以下步骤:计算障碍物高度剖面,计算多个垂直安全轨迹中相对于障碍物轮廓的垂直安全边界以及飞行器执行轨迹的相应飞行设定点,选择 飞行设定点使得有可能使飞机尽可能靠近障碍物轮廓,同时在至少垂直安全裕度之间保持飞机和障碍物轮廓之间,同时过滤飞行设定点值,使得飞行设置点值的变化 设定值不超过预定义的持续时间的变化差异 系统。
    • 6. 发明授权
    • Method for determining the horizontal profile of a flight plan complying with a prescribed vertical flight profile
    • 用于确定符合规定垂直飞行剖面的飞行计划的水平剖面的方法
    • US08090526B2
    • 2012-01-03
    • US12094656
    • 2006-11-11
    • Nicolas MartyGilles FrancoisElias Bitar
    • Nicolas MartyGilles FrancoisElias Bitar
    • G01C21/00G01C23/00
    • G08G5/0034G01C21/00
    • The present invention relates to the definition, in a flight plan, of the horizontal profile of an air route with vertical flight and speed profile prescribed on departure and/or on arrival, by a stringing together of check-points and/or turn points associated with local flight constraints and called “D-Fix” because they are not listed in a published navigation database like those called “Waypoints”. It consists in charting, on curvilinear distance maps, a direct curvilinear path joining the departure point to the destination point of the air route while complying with vertical flight and speed profiles prescribed on departure and/or on arrival and while guaranteeing a circumnavigation of the surrounding reliefs and compliance with regulated overfly zones, then in approximating the series of points of the direct curvilinear path by a sequence of straight segments complying with an arbitrary maximum deviation threshold relative to the points of the series and an arbitrary minimum lateral deviation threshold relative to the set of obstacles to be circumnavigated and in adopting as “D-Fix” points the points of the intermediate intersections of the rectilinear segments.
    • 本发明涉及在飞行计划中通过在起飞和/或到达时规定的垂直飞行和速度分布的空中航线的水平轮廓的定义,通过将检查点和/或转向点相关联在一起 具有本地飞行限制,并称为“D-Fix”,因为它们未列在已发布的导航数据库中,如“Waypoint”。 它包括在曲线距离图上的曲线图,将出发点连接到航空路线的目的地点的直接曲线路径,同时遵守在出发和/或抵达时规定的垂直飞行和速度曲线,同时保证周围的环绕 然后通过一系列符合任意最大偏差阈值的直线段相对于该系列点和相对于该系列的任意最小横向偏差阈值逼近直线曲线路径的一系列点, 一系列要循环的障碍,并采用“D-Fix”来表示直线段的中间交点的点。
    • 8. 发明申请
    • Flight Management System of an Unmanned Aircraft
    • 无人机飞行管理系统
    • US20110245997A1
    • 2011-10-06
    • US13080372
    • 2011-04-05
    • Nicolas MartyCoulmeau FrançoisBoone Xavier
    • Nicolas MartyCoulmeau FrançoisBoone Xavier
    • G05D1/00
    • G05D1/0022
    • A flight management system of an unmanned aircraft linked to a control station by communication means includes: a first set of a number N of successive navigation functions (iND with i=1, . . . N) remotely situated within the control station, a control function on board the aircraft, generating, from guidance setpoints, commands intended to control the aircraft so that it observes the guidance setpoints, and a second set of a number N of successive navigation functions (iNE, with i=1, . . . , N) on board the aircraft, and configuration means, capable of performing a combination of a number N of successive functions, each of the successive functions being chosen from the first and second sets, said combination of successive functions generating the guidance setpoints transmitted to the onboard control function.
    • 通过通信装置链接到控制站的无人飞行器的飞行管理系统包括:远程位于控制站内的N个连续导航功能(iND,i = 1,...)的第一组,控制 在飞行器上的功能,从指导设定点产生用于控制飞机的命令,以使其观察到指导设定点,以及第二组连续导航功能(iNE,i = 1,..., N),以及配置装置,能够执行N个连续功能的组合,每个连续功能是从第一组和第二组中选择的,所述连续功能的组合产生传送给 车载控制功能。