Invention Grant
US08412434B2 Method and device of calculating aircraft braking friction and other relating landing performance parameters based on the data received from aircraft's on board flight data management system 有权
基于从飞机的机上飞行数据管理系统接收到的数据,计算飞机制动摩擦和其他相关着陆性能参数的方法和装置

  • Patent Title: Method and device of calculating aircraft braking friction and other relating landing performance parameters based on the data received from aircraft's on board flight data management system
  • Patent Title (中): 基于从飞机的机上飞行数据管理系统接收到的数据,计算飞机制动摩擦和其他相关着陆性能参数的方法和装置
  • Application No.: US13507470
    Application Date: 2012-06-28
  • Publication No.: US08412434B2
    Publication Date: 2013-04-02
  • Inventor: Zolán Iván Radó
  • Applicant: Zolán Iván Radó
  • Applicant Address: US IL Chicago
  • Assignee: Aviation Safety Technologies, LLC
  • Current Assignee: Aviation Safety Technologies, LLC
  • Current Assignee Address: US IL Chicago
  • Agent William P. Oberhardt
  • Main IPC: B64C25/42
  • IPC: B64C25/42
Method and device of calculating aircraft braking friction and other relating landing performance parameters based on the data received from aircraft's on board flight data management system
Abstract:
This invention relates to a method and apparatus for the calculation of aircraft braking friction and other relating landing parameters, including but not limited to aircraft braking action, aircraft takeoff distance, aircraft landing distance, runway surface conditions and runway surface friction based on the data collected by and available in the aircraft Flight Data Recorder (FDR) or other flight data management system, for example, the Quick Access Recorder (QAR), to provide all involved personnel in the ground operations of an airport and airline operations, including but not limited to aircraft pilots, airline operation officers and airline managers as well as airport operators, managers and maintenance crews, with the most accurate and most recent information on the true aircraft landing performance parameters to help better and more accurate safety and economical decision making.
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