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Preparing for transition: Accommodation of mixed data communication equipage for a harmonized future

机译:为过渡做准备:为混合的未来提供混合数据通信设备

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The Aeronautical Telecommunications Network using the Internet Protocol Suite (ATN/IPS) continues to progress in standardization and maturity towards becoming an implemented reality, and is a recognized end-state goal for United States (US) - European Union (EU) Data Communication Harmonization. However, the transition from existing data communications to ATN/IPS creates challenges for handling multiple applications and network protocols. Potentially, some form of accommodation of both existing Aeronautical Telecommunications Network using the Open System Interconnection (ATN/OSI) and the Aircraft Communication Addressing and Reporting System (ACARS) will be necessary to allow interoperability to occur on the network level as well as at the application level, considering Future Air Navigation System 1/A (FANS-1/A), Baseline 1 (B1), and Baseline 2 (B2) applications. Changing equipage on aircraft is expensive and time consuming, considering factors such as the appropriate time to make a change to the aircraft given its maintenance schedules, revenue flight load, etc., in addition to the costs for development, certification and installation of equipage. Air Navigation Service Providers (ANSPs) should also not be required to continually upgrade ground systems or implement duplicate networks to deal with these complexities. Therefore an approach is needed that would allow the initial introduction of ATN/IPS while preserving backwards compatibility for aircraft equipped with other technologies, ensuring that airline and ANSP investments are preserved as much as possible while providing a transition path to the envisaged end state. In order to enable that transition, depending on the final architecture and configuration, network diversity could be accommodated on the aircraft, on the ground, or a combination of both. As discussed in various forums such as the Airlines Electronic Engineering Committee (AEEC), it is unlikely that a triple stack (i.e., ACARS, ATN/OSI, and ATN/IPS) will be implemented in the aircraft given complexity, certification, and cost factors. Therefore, much of the accommodation would have to be done on the ground, potentially using a protocol gateway. This gateway would accommodate a both FANS-1/A and B1/B2 applications, meaning a combination of ACARS to ATN/IPS and ATN/OSI to ATN/IPS translation capabilities (and vice versa). This paper discusses efforts to further investigate this gateway concept, the types of capabilities that are needed, potential architectures, advantages and disadvantages, and prototype activities. Finally proposed future work that is necessary to reach Data Communication Harmonization goals and conclusions will be given.
机译:使用Internet协议套件(ATN / IPS)的航空电信网络在标准化和成熟度方面不断发展,已成为已实现的现实,并且是美国(US)-欧盟(EU)数据通信协调的公认最终目标。 。但是,从现有的数据通信到ATN / IPS的过渡给处理多个应用程序和网络协议带来了挑战。潜在地,使用开放系统互连(ATN / OSI)和飞机通信寻址与报告系统(ACARS)的现有航空电信网络都需要某种形式的容纳,以允许在网络层以及网络层之间实现互操作性。应用级别,请考虑未来空中航行系统1 / A(FANS-1 / A),基准1(B1)和基准2(B2)应用。改变飞机上的设备既昂贵又费时,除了开发,证明和安装设备的成本外,还考虑到一些因素,例如根据维护计划,适当的飞行时间等适当的时间对飞机进行更改。也不应要求空中航行服务提供商(ANSP)不断升级地面系统或实施重复的网络来应对这些复杂性。因此,需要一种方法,该方法将允许初始引入ATN / IPS,同时保留配备其他技术的飞机的向后兼容性,确保尽可能保留航空公司和ANSP的投资,同时提供到设想的最终状态的过渡路径。为了实现这种过渡,取决于最终的体系结构和配置,可以在飞机,地面或两者的组合中容纳网络多样性。正如在航空电子工程委员会(AEEC)等各种论坛中所讨论的,鉴于复杂性,认证和成本,飞机上不太可能采用三层堆叠(即ACARS,ATN / OSI和ATN / IPS)因素。因此,许多调整必须在地面上进行,可能使用协议网关。该网关将同时容纳FANS-1 / A和B1 / B2应用,这意味着ACARS到ATN / IPS以及ATN / OSI到ATN / IPS转换功能的组合(反之亦然)。本文讨论了进一步研究此网关概念,所需功能的类型,潜在的体系结构,优点和缺点以及原型活动的工作。最后提出了实现数据通信协调目标所必需的未来工作,并将得出结论。

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