移动无线局域网中延迟最小化的RLC缓冲区大小动态控制

Rajeev Kumar, A. Francini, S. Panwar, Sameerkumar Sharma
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引用次数: 16

摘要

5G有望扩展移动网络所支持的交互式应用集。低端到端数据包延迟是这些应用程序正常运行的基本要求,但在与使用贪婪TCP源进行端到端传输的弹性应用程序共享的数据包缓冲区中可能会受到损害。弹性应用程序的排队延迟累积会降低交互式应用程序的延迟,而后者的吞吐量可能很轻(在线游戏和语音通话就是这种情况)。在3GPP RAN栈的RLC层中,缓冲区共享是不可避免的。为了尽量减少其对交互式应用程序的负面影响,我们在RLC层和PDCP层之间划分了缓冲。然后,我们为PDCP缓冲区配备了按流队列,并将一种新的动态分级机制应用于RLC缓冲区,该机制强制实现与RLC连接的现有配置兼容的最低排队延迟。在与贪婪TCP流共享的蜂窝链路上,与使用固定大小的仅限rlc缓冲区的默认配置相比,我们的动态分级解决方案可以将PING数据包的排队延迟减少至多两个数量级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic control of RLC buffer size for latency minimization in mobile RAN
5G is expected to expand the set of interactive applications enabled by the mobile network. Low end-to-end packet latency is a fundamental requirement for proper operation of those applications, but may be compromised in packet buffers shared with elastic applications that use greedy TCP sources for end-to-end transport. The accumulation of queuing delay by the elastic application degrades the latency for the interactive application, however light the throughput of the latter may be (as is the case with online gaming and over-the top voice). Buffer sharing is unavoidable in the RLC layer of the 3GPP RAN stack. To minimize its negative effect on interactive applications, we split the buffering between the RLC and PDCP layers. Then we equip the PDCP buffer with per-flow queues, and apply to the RLC buffer a new dynamic sizing mechanism that enforces the lowest queuing delay that is compatible with the existing configuration of the RLC connection. On a cellular link shared with a greedy TCP flow, our dynamic sizing solution can reduce the queuing delay of PING packets by up to two orders of magnitude compared to the default configuration with an RLC-only buffer of fixed size.
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