A performance comparison between VDL mode 2 and VHF ACARS by protocol simulator

J. Kitaori
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引用次数: 14

Abstract

VHF Aircraft Communications Addressing and Reporting System (ACARS) is the most popular VHF aeronautical datalink. It is used for such applications as airline operation and air traffic control. VHF ACARS has only a 2400 bit/s (bps) transmission rate air-ground link. The VHF Digital Link mode 2 (VDL2) system, which has a thirteen times higher transmission rate air-ground link than VHF ACARS, is very similar to VHF ACARS. Both systems can deal with messages in ACARS format. Even though the systems are well used for various operations, their effective link capacities are not so clear. Finding out effective communication performance, including real link capacity and acceptable maximum delay, is useful for the design layout of ground facilities and rebuild datalink operation guidance in the near future. We built both VHF ACARS and VDL2 protocol models on an OPNET protocol simulator to evaluate their effective communication performance. This paper gives an outline of the protocol models and comparison results of these performances by simulation. Statistics such as transmission delay and throughput have been obtained under various load conditions for up to 200 aircraft. Before starting the simulation, we analyzed message data length and the message generation interval of VHF ACARS from real communication logs in Japan. The message data length was mostly distributed randomly, below 660 bytes, and messages exceeding 660 bytes rarely appeared. The message generation interval mostly followed Pareto distribution. We assumed that the message data length and data generation interval followed uniform distribution and Pareto distribution respectively. We found the following by analyzing simulation results. i) When data traffic load generated from an aircraft equaled the load directed to the aircraft, the VDL2 system was able to process 4.6 times more congested load than the VHF ACARS. ii) When data traffic load generated from an aircraft was five times higher than the load directed to the aircraft, the VDL2 system was able to process 8.8 times more congested load than the VHF ACARS. The load condition approximated real VHF ACARS data generation ratio between forward link and reverse link.
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利用协议模拟器对VDL模式2和VHF ACARS的性能进行了比较
甚高频飞机通信寻址和报告系统(ACARS)是目前最流行的甚高频航空数据链。它用于航空公司运营和空中交通管制等应用。甚高频ACARS只有2400比特/秒(bps)的空地链路传输速率。VHF数字链路模式2 (VDL2)系统具有比VHF ACARS高13倍的地空链路传输速率,与VHF ACARS非常相似。两个系统都可以处理ACARS格式的消息。尽管这些系统很好地用于各种操作,但它们的有效连接能力并不那么清楚。找出有效的通信性能,包括实际链路容量和可接受的最大时延,对地面设施的设计布局和将来重建数据链的运行指导具有重要意义。我们在OPNET协议模拟器上建立了VHF ACARS和VDL2协议模型,以评估它们的有效通信性能。本文概述了协议模型,并通过仿真对这些性能进行了比较。在多达200架飞机的各种负载条件下,获得了传输延迟和吞吐量等统计数据。在开始仿真之前,我们分析了日本VHF ACARS的真实通信日志中的报文数据长度和报文生成间隔。消息数据长度多为随机分布,小于660字节,很少出现超过660字节的消息。消息生成间隔基本遵循帕累托分布。我们假设消息数据长度和数据生成间隔分别服从均匀分布和Pareto分布。通过对仿真结果的分析,我们发现了以下几点:i)当飞机产生的数据流量负载等于直接到飞机的负载时,VDL2系统能够处理的拥塞负载是VHF ACARS的4.6倍。ii)当飞机产生的数据流量负载比直接到飞机的负载高5倍时,VDL2系统能够处理比VHF ACARS多8.8倍的拥塞负载。负载状态近似于VHF ACARS正反向数据生成比。
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