GTP-U和SRv6无状态翻译的性能评价

Chunghan Lee, Kentaro Ebisawa, H. Kuwata, M. Kohno, S. Matsushima
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引用次数: 9

摘要

GPRS隧道协议用户平面(GTP-U)在GSM、UMTS和4G LTE中早已部署。现在对于5G, IPv6段路由(SRv6)已被提议作为3GPP和IETF中GTP-U的替代用户平面协议。基于源路由的SRv6具有无状态流量引导、网络编程等优点。尽管有这些优势,但即使在5G部署中,由于3GPP节点之间存在大量依赖关系,也很难期望一次性用SRv6取代GTP-U。因此,在IETF中提出了无状态翻译和与GTP-U共存。然而,GTP-U与SRv6之间没有合适的测量平台和性能评价结果。特别是,当接收数据包类型与发送数据包类型不同时,很难测量商业流量生成器的延迟。本文主要研究了GTP-U和SRv6无状态翻译之间的性能评价。我们设计了一个使用可编程开关的SRv6测量平台,并在本地环境中使用预定义的场景测量了GTP-U和SRv6功能。众所周知的性能指标,如吞吐量和每秒包数(PPS),是由流量生成器测量的,而函数的延迟是使用我们的SRv6平台上的遥测技术测量的。在我们的评估中,我们没有发现SRv6无状态翻译中众所周知的指标的性能突然下降。此外,SRv6无状态转换的延迟与GTP-U相似,性能下降可以忽略不计。通过评估结果可以明显看出,SRv6无状态转换在5G用户平面上是可以接受的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Evaluation of GTP-U and SRv6 Stateless Translation
The GPRS Tunneling Protocol User Plane (GTP-U) has long been deployed for GSM, UMTS and 4G LTE. Now for 5G, IPv6 Segment Routing (SRv6) has been proposed as an alternative user plane protocol to GTP-U in both 3GPP and IETF. SRv6 based on source routing has many advantages: stateless traffic steering, network programming and so on. Despite the advantages, it is hard to expect to replace GTP-U by SRv6 all at once, even in a 5G deployment because of a lot of dependencies between 3GPP nodes. Therefore, stateless translation and coexistence with GTP-U have been proposed in IETF. However there are no suitable measurement platform and performance evaluation results between GTP-U and SRv6. In particular, it is hard to measure latency on commercial traffic generators when a receiving packet type is different from a sending packet type. In this paper, we focus on the performance evaluation between GTP-U and SRv6 stateless translation. We designed an SRv6 measurement platform using a programmable switch, and measured GTP-U and SRv6 functions with pre-defined scenarios on a local environment. Well-known performance metrics, such as throughput and packets per second (PPS), are measured by the traffic generator while the latency at the functions was measured using telemetry on our SRv6 platform. In our evaluation, we cannot find the abrupt performance drop of well-known metrics at SRv6 stateless translation. Moreover, the latency of SRv6 stateless translation is similar to GTP-U and their performance degradation is negligible. Through the evaluation results, it is obvious that the SRv6 stateless translation is acceptable to the 5G user plane.
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