This letter analyzes the Low-latency Region (LLR) of a best-effort link (i.e., no traffic differentiation, and first come first serve scheduling) carrying both delay-sensitive (DS) streaming and non-delay-sensitive (NDS) background traffic. Moreover, inside the LLR, we show it exists a proportional fair arrival rate allocation for both the DS and NDS traffic streams. This optimal operating point results from maximizing a simple throughput-delay trade-off that considers the NDS traffic load, and the mean delay of the DS packets. To show how the presented trade-off could be used to allocate NDS traffic in a realistic scenario, we use Google Stadia traffic traces to generate the DS flow. Results from this use-case confirm that the throughput-delay trade-off also works regardless the distribution of the packet arrival and packet service times.
翻译:这封信分析了低纬度区域(LLLR)最努力的连接(即没有交通差异,首先是排期),既包含延迟敏感流(DS)流,又包含非延误敏感(NDS)背景交通。此外,在LLR内部,我们显示DS和NDS交通流存在比例公平抵达率分配。这个最佳操作点的结果在于最大限度地实现一个简单的吞并中值交易,考虑到NDS的交通负荷,以及DS包的中值延迟。为了表明如何利用所提出的交易来在现实情况下分配NDS流量,我们利用谷歌斯塔迪亚的交通轨迹来生成DS流。这个使用案例的结果证实,吞并贸易量交易无论包运和包装服务时间的分布如何,都有效。