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WiFi can be the weakest link of round trip network latency in the wild

机译:WiFi可能是野外往返网络延迟的最薄弱环节

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As mobile Internet is now indispensable in our daily lives, WiFi's latency performance has become critical to mobile applications' quality of experience. Unfortunately, WiFi hop latency in the wild remains largely unknown. In this paper, we first propose an effective approach to break down the round trip network latency. Then we provide the first systematic study on WiFi hop latency in the wild based on the latency and WiFi factors collected from 47 APs on T university campus for two months. We observe that WiFi hop can be the weakest link in the round trip network latency: more than 50% (10%) of TCP packets suffer from WiFi hop latency larger than 20ms (100ms), and WiFi hop latency occupies more than 60% in more than half of the round trip network latency. To help understand, troubleshoot, and optimize WiFi hop latency for WiFi APs in general, we train a decision tree model. Based on the model's output, we are able to reduce the median latency by 80% from 50ms to 10ms in one real case, and reduce the maximum latency from 250ms to 50ms in another real case.
机译:由于移动互联网已成为我们日常生活中不可或缺的部分,因此WiFi的延迟性能已成为移动应用程序体验质量的关键。不幸的是,野生环境中的WiFi跳时延仍然未知。在本文中,我们首先提出一种有效的方法来打破往返网络延迟。然后,我们根据T大学校园内47个AP收集的延迟和WiFi因子进行了为期两个月的野外WiFi跳跃延迟的首次系统研究。我们观察到WiFi跳可能是往返网络延迟中最弱的链接:超过50%(10%)的TCP数据包遭受的WiFi跳时延大于20ms(100ms),而WiFi跳时延占60%以上。往返网络延迟的一半以上。通常,为了帮助理解,故障排除和优化WiFi AP的WiFi跳时延,我们训练了决策树模型。根据模型的输出,在一个实际情况下,我们能够将中值延迟时间从50ms降低到10ms的80%,在另一个实际情况下,将最大延迟时间从250ms降低到50ms。

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