会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明申请
    • DEVICE FOR ASSISTING IN THE PILOTING OF AIRCRAFT
    • US20220309930A1
    • 2022-09-29
    • US17706537
    • 2022-03-28
    • THALES
    • Laurent FLOTTESylvain YANAmandine AUDOUYValentin DUPONT
    • G08G5/00
    • A device for assisting in the piloting of an aircraft, includes a competency module comprising a plurality of application components or capabilities, each capability having a competency domain and being configured according to one and the same logic format to calculate events based on data acquired from various certified or non-certified avionics sources and/or from various sources external or internal to the aircraft, and to process solution requests and generate solution proposals; a processing module comprising components that are configured to determine the presence of an impact on the current mission of the aircraft, either from a calculated event or from a solution proposal; a solution module comprising components that are configured to send solution requests based on the presence of an impact, and components that are configured to construct a solution for adapting the current mission of the aircraft based on at least one solution proposal; and a management module comprising components that are configured to manage conflicts and priorities of streams, and components that are configured to direct the exchanges between the various modules of the device.
    • 6. 发明申请
    • TRAJECTORY MONITORING
    • 轨道监测
    • US20160358482A1
    • 2016-12-08
    • US15171887
    • 2016-06-02
    • THALES
    • Grégoire JACOTOTCédnic FLAVENLaurent FLOTTE
    • G08G5/00
    • G08G5/0047G05D1/0077G06F11/16
    • A method for monitoring the flight trajectory of an aircraft comprises the steps reiterated in time consisting in receiving and comparing two trajectory objects, the trajectory objects being associated with two initially identical flight trajectories determined independently of each other over time; and, in case of difference between the two trajectory objects, determining a failed trajectory from the two flight trajectories by comparison with the last known state without fault, the last known state without fault corresponding to two identical trajectory objects. Developments describe the use of flight plan segments, of signatures, fault isolation simultaneously to a change of current leg, the use of levels of operational safety according to an RNP-AR procedure and the notification of the pilot of the trajectory determined as having failed. Software and system aspects are also described.
    • 用于监视飞行器的飞行轨迹的方法包括在时间上重复的步骤,包括接收和比较两个轨迹对象,轨迹对象与随时间彼此独立地确定的两个最初相同的飞行轨迹相关联; 并且在两个轨迹对象之间的差异的情况下,通过与没有故障的最后一个已知状态进行比较来确定来自两个飞行轨迹的故障轨迹,对于两个相同的轨迹对象,最后一个没有故障的已知状态。 发展描述了使用飞行计划段,签名,故障隔离同时改变当前路段,使用根据RNP-AR程序的操作安全级别以及确定为失败的轨迹的导频的通知。 还描述了软件和系统方面。