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Proposed avionics architecture for Air Force Air Mobility Command aircraft to meet CNS/ATM and GATM requirements

机译:拟议的空军航空流动性指挥飞机的航空电子架构,以满足CNS / ATM和GATM要求

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Air Force Air Mobility Command (AMC) aircraft must meet military requirements for transport missions anywhere in the world while also addressing emerging Civil Aviation Authority requirements for Communication, Navigation and Surveillance (CNS) for operation in the Global Air Traffic Management (GATM) environment. An architecture designed to meet these requirements must accommodate existing avionics to the maximum extent possible to minimize costs and must also incorporate new avionics that take advantage of Commercial Off The Shelf (COTS)/Non Developmental Items (NDI) and open system architectures to be able to incorporate the growth necessitated by these emerging requirements. This paper describes a generic architecture designed to meet these requirements for a tanker/transport platform. The architecture is designed so that future upgrades for these evolving requirements could be met with minimal impact to the aircraft. The implementation of this architecture is primarily a systems engineering effort in managing the human machine interface necessary to provide a seamless integration of GATM and navigation safety equipment including an Enhanced Ground Proximity Warning System (EGPWS), a Communication Management Function (CMF), a Multi-Mode Receiver (MMR), a traffic collision and avoidance system (TCAS), new communications radios, a new displays subsystem and existing flight management systems that are modified, as necessary, to support Required Navigation Performance (RNP) objectives
机译:空军空中流动性指挥(AMC)飞机必须符合世界上任何地方的运输任务的军事要求,同时还解决了全球空中交通管理(GATM)环境中运行的通信,导航和监测(CNS)的新兴民航权限要求。旨在满足这些要求的架构必须适应现有的航空电子设备,以最大程度地实现最大限度的成本,并且还必须包含新的航空电子设备,这些航空电子设备可以利用商业设备(COTS)/非发育项目(NDI)和开放系统架构能够实现新的航空电子设备纳入这些新兴要求所需的增长。本文介绍了一种通用架构,旨在满足油轮/运输平台的这些要求。该架构的设计使这些不断的要求的未来升级可以满足对飞机的最小影响。该架构的实现主要是管理人机界面的系统工程工作,以提供GATM和导航安全设备的无缝集成,包括增强的地面接近警告系统(EGPWS),通信管理功能(CMF),多个-Mode接收器(MMR),交通碰撞和避免系统(TCAS),新的通信无线电,新的显示子系统以及必要时修改的现有飞行管理系统,以支持所需的导航性能(RNP)目标

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