A performance study of Audio Video Bridging in aeronautic Ethernet networks

Emanuel Heidinger, Fabien Geyer, S. Schneele, M. Paulitsch
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引用次数: 27

Abstract

Audio-Video-Bridging (AVB) is a promising new commercially available Ethernet-based standard providing mechanism for audio and video transmission over Ethernet supporting demanding audio and video transmission delay requirements. This paper addresses the applicability of using AVB in a fully-switched Ethernet network that covers safety-related functions in the aeronautics. Avionic systems leveraging such digital networks have stringent requirements in terms of audio quality, latency, and jitter; e.g., latency can be at most a few milliseconds. The result of this work is a performance study of audio transmission approaches in aeronautics where we address AVB without synchronization and AVB synchronization with 802.1AS. We pay special attention to the failure mode of losing synchronization during operation. Two real-world scenarios are addressed in the experimental results - a demonstration of a switched Ethernet aircraft cabin and a demonstration for a highly safety-related audio system. For these two scenarios hard performance bounds are required in terms of synchronous playback that cannot easily be fulfilled, especially when time synchronization is lost.
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航空以太网中音视频桥接的性能研究
音视频桥接(AVB)是一种很有前途的新型商用基于以太网的标准,提供了通过以太网进行音频和视频传输的机制,支持苛刻的音频和视频传输延迟要求。本文讨论了在涵盖航空安全相关功能的全交换以太网中使用AVB的适用性。利用这种数字网络的航空电子系统在音频质量、延迟和抖动方面有严格的要求;例如,延迟最多可以是几毫秒。这项工作的结果是对航空领域音频传输方法的性能研究,其中我们解决了不同步的AVB和使用802.1AS的AVB同步。我们特别关注在运行过程中失去同步的故障模式。实验结果解决了两个现实场景-交换以太网飞机机舱的演示和高度安全相关的音频系统的演示。对于这两种场景,同步回放需要硬性能界限,这很难实现,特别是在时间同步丢失的情况下。
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