利用ACTS模拟器对VDL模式2上契约模式(TIS-C)下的交通信息服务进行带宽模拟

R. Ehrmanntraut
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引用次数: 2

摘要

合同模式下的交通信息服务(TIS-C)的概念是新的,因为它提出了空中和地面之间的客户端-服务器协议,类似于万维网的协议,通过将这些协议扩展为移动安全应用程序的合同行为。与广播模式(TIS-B)的交通信息服务相比,TIS-C的优势,特别是与基于廉价和可用的mode - s技术的自动相关监视-广播(ADS-B)的授权相结合时,已经在之前的工作中进行了讨论。此外,有人认为,即使在可用的数字链路模式2 (VDL 2)上操作,TIS-C也可以满足机载分离保证系统(ASAS)应用的基本要求,并且做得更多。TIS-C的技术概念和协议已经被详细阐述,并且现在可以使用。本文给出了在VDL2上验证TIS-C概念的结果。所使用的验证工具是航空通信技术模拟器(ACTS),该模拟器由EUROCONTROL公司开发,是目前性能最好的VDL2模拟器之一。本文分析了ASAS的不同TIS-C应用的带宽使用情况,以及在流量负载、设备速率和VDL2参数变化的情况下运行的几种场景。讨论了模拟参数的技术和操作假设。这项工作证明了基于VDL 2的TIS-C概念在许多应用中是可能的,但也显示了它的局限性。本文首次给出了仿真的验证结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bandwidth simulations of the traffic information service in contract mode (TIS-C) over VDL mode 2 with the ACTS simulator
The concept of traffic information services in contract mode (TIS-C) is new, in that it proposes client-server protocols between the air and the ground similar to those known from the World-Wide Web by extending these with contractual behaviour for mobile safety applications. The advantages of TIS-C in comparison to traffic information services in broadcast mode (TIS-B), especially when combined with a mandate for automatic dependent surveillance-broadcast (ADS-B) based on cheap and available MODE-S technology have been discussed in previous work. In addition it has been argued that TIS-C even when operated over the available digital link mode 2 (VDL 2) can fulfill basic requirements of applications for airborne separation assurance system (ASAS), and do much more. The technical concepts and protocols of TIS-C have been elaborated and are available now. This paper presents the results of the validation of the TIS-C concept over VDL2. The validation tool that is used is the aeronautical communications technologies simulator (ACTS), which has been developed in EUROCONTROL and is one of the most performing VDL2 simulators at the moment. Different TIS-C applications for ASAS are analysed in their use of bandwidth, and several scenarios run with changing traffic loads, equipage rates, and VDL2 parameters. The technical and operational assumptions for parameters of the simulations are discussed. The work proves that the TIS-C concept over VDL 2 is possible for many applications, but also shows its limitations. The validation results emanating from the simulations are presented for the first time in this paper.
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