Xinlei Yang

dblp:252/1188 · DBLP profile ↗
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8ranked-venue papers
3as first author
6since 2021 · last 2025
0000-0002-7430-4248ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Computer networks · 5 · 2 first-author · 4 since 2021Systems, architecture and hardware · 1Databases, data management, data science and information retrieval · 1 · 1 first-author · 1 since 2021Graphics, computer vision, multimedia, augmented reality and games · 1 · 1 since 2021Applied, interdisciplinary, general and emerging computing · 1 · 1 first-author · 1 since 2021
YearPublicationVenuePosition
2025 A Four-Year Retrospective of Mobile Access Bandwidth Evolution: The Inspiring, the Frustrating, and the Fluctuating
abstract
Recent advances in mobile technologies (like WiFi 6 and 5G) do not seem to deliver the promised access bandwidth. To effectively characterize mobile access bandwidth in the wild, we work with a major commercial mobile bandwidth testing app to conduct a long-term (2020-2023) and large-scale (involving 4.76M users) measurement study in China, based on coarse-grained general statistics and fine-grained sampling diagnostics. Our study presents distinct facts as to WiFi, 5G, and 4G: in the past few years, the average WiFi download bandwidth exhibits a considerable rise (by 119.7% ), the average 5G download bandwidth constantly decreases (by a total of 20.2% ) despite the enormous infrastructure investments, while the average 4G download bandwidth first declines (by 22.1% ) and then increases (by 22.5% ). The situations of upload bandwidths are generally similar to those of download bandwidths, except that 5G upload bandwidths manifestN-shaped$(\nearrow \searrow \nearrow )$fluctuations. Our cross-layer and cross-technology analysis reveals a variety of impact factors as well as their complicated interplay as the root causes, such as the bottlenecks in underlying infrastructure (e.g., communication devices and wired Internet access), the traffic offloading from one access technology to another, the influence of the COVID-19 pandemic, and the side effects of aggressively migrating radio resources from 4G to 5G. With the longitudinal, holistic picture of today's mobile access bandwidth, we finally provide multifold practical implications on closing the technology gaps.
Zhenhua Li 0001, Xinlei Yang, Jing Yang 0052, Xingyao Li, Hao Lin 0005, Feng Qian 0001, Yunhao Liu 0001, Zhi Liao, Daqiang Hu
IEEE Trans. Mob. Comput.3
2023 SkipStreaming: Pinpointing User-Perceived Redundancy in Correlated Web Video Streaming through the Lens of Scenes
abstract
When streaming over the web, correlated videos (e.g., a series of TV episodes) appear to bear considerable redundant clips, mostly included in the intros, outros, recaps, and commercial breaks, leading to a waste of network traffic and playback time. Mainstream video content providers have taken various measures to identify these clips, but often result in unexpected and undesirable user experiences. In this paper, we conduct a large-scale, crowdsourced study to demystify the root causes of poor experiences. Driven by the findings, we propose to reconsider the problem from a novel perspective of scenes without going through the excessive video frames, which pays special attention to how the contents of correlated videos are organized during video production. To enable this idea, we design efficient approaches to the separation of video scenes and the identification of visual redundancy. We build an open-source system to embody our design, which achieves fast (e.g., taking ~38 seconds to process a 45-minute video using a common commodity server) and accurate (incurring only 770-ms deviation on average) redundancy recognition on representative workloads.
Wei Liu 0148, Xinlei Yang, Zhenhua Li 0001, Feng Qian 0001
ACM Multimedia2
2023 Visual-Aware Testing and Debugging for Web Performance Optimization
abstract
Web performance optimization services, or web performance optimizers (WPOs), play a critical role in today’s web ecosystem by improving page load speed and saving network traffic. However, WPOs are known for introducing visual distortions that disrupt the users’ web experience. Unfortunately, visual distortions are hard to analyze, test, and debug, due to their subjective measure, dynamic content, and sophisticated WPO implementations.
Xinlei Yang, Wei Liu 0148, Hao Lin 0005, Zhenhua Li 0001, Feng Qian 0001, Xianlong Wang 0003, Yunhao Liu 0001, Tianyin Xu
WWW1
2023 Fast Uplink Bandwidth Testing for Internet Users
abstract
Access bandwidth measurement is crucial to emerging Internet applications for network-aware content delivery. However, today’s bandwidth testing services (BTSes) are slow and costly—the tests take a long time to run, consume a great deal of data usage, and usually require large-scale test server deployments. The inefficiency and high cost of BTSes root in their methodologies that use excessive temporal/spatial redundancies for combating noises in Internet measurement. In particular, compared to downlink BTSes, uplink BTSes are subject to more severe performance problems and technical challenges. This paper presents FastUpBTS to make uplink BTS fast and cheap while maintaining high accuracy. The key idea is to strategically accommodate and exploit the noise rather than repetitively and exhaustively suppress the impact of noise. This is achieved by a novel statistical sampling framework termed fuzzy rejection sampling. We build FastUpBTS as an end-to-end BTS that implements fuzzy rejection sampling based on memorization-reinforced throughput denoising, data-driven server selection, and informed multi-homing support. Our evaluation shows that with only 30 test servers, FastUpBTS achieves the same level of accuracy compared to the state-of-the-art BTS (SpeedTest.net) that deploys ~16,000 servers. Most importantly, FastUpBTS makes bandwidth tests$5.4\times $faster and$6.8\times $more data-efficient.
Zhenhua Li 0001, Xingyao Li, Xinlei Yang, Xianlong Wang 0003, Feng Qian 0001, Yunhao Liu 0001
IEEE/ACM Trans. Netw.3
2022 Mobile access bandwidth in practice: measurement, analysis, and implications
abstract
Recent advances in mobile technologies such as 5G and WiFi 6E do not seem to deliver the promised mobile access bandwidth. To effectively characterize mobile access bandwidth in the wild, we work with a major commercial mobile bandwidth testing app to analyze mobile access bandwidths of 3.54M end users in China, based on fine-grained measurement and diagnostic information. Our analysis presents a surprising and frustrating fact---in the past two years, the average WiFi bandwidth remains largely unchanged, while the average 4G/5G bandwidth decreases remarkably. Our analysis further reveals the root causes---the bottlenecks in the underlying infrastructure (e.g., devices and wired Internet access) and side effects of aggressively migrating radio resources from 4G to 5G---with implications on closing the technology gaps. Additionally, our analysis provides insights on building ultra-fast, ultra-light bandwidth testing services (BTSes) at scale. Our new design dramatically reduces the test time of the commercial BTS from 10 seconds to 1 second on average, with a 15× reduction on the backend cost.
Xinlei Yang, Hao Lin 0005, Zhenhua Li 0001, Feng Qian 0001, Xingyao Li, Zhiming He, Xianlong Wang 0003, Yunhao Liu 0001, Zhi Liao, Daqiang Hu, Tianyin Xu
SIGCOMM1
2021 Fast and Light Bandwidth Testing for Internet Users
Xinlei Yang, Xianlong Wang 0003, Zhenhua Li 0001, Yunhao Liu 0001, Feng Qian 0001, Liangyi Gong, Tianyin Xu
NSDI1
2019 The Cask Effect of Multi-source Content Delivery: Measurement and Mitigation
abstract
With the explosive growth of Internet traffic, multi-source content delivery has been introduced for improving the performance and quality-of-experience (QoE) of Internet services. Upgrading from single-source content delivery to multi-source content delivery, however, may not always lead to a better performance. Instead, a decline in terms of delivery speed often occurs. By conducting a comprehensive study, we show that the underlying reason of this counter-intuitive phenomenon is actually due to the cask effect of data sources at both macro and micro level. Specifically, at the macro level, data sources with different types are highly heterogeneous in terms of delivery performance, which means data sources with certain types are particularly easy to become the "short boards". At the micro level, for the data sources chosen by a client, the high diversity of participation time (DPT) of the sources could impair the acceleration effect. Motivated by the above findings, we design MDR (Multi-source Delivery Redirector), a middleware that contains two optimizations to improve the acceleration effect. One is the feature-greedy selection algorithm which can avoid selecting data sources with inferior types, and the other is the DPT-driven shuffle strategy which can avoid using unstable data sources. Simulation-based experiments show that the MDR outperforms existing approaches in terms of overall downloading performance.
Minghao Zhao 0001, Xinlei Yang, Zhenhua Li 0001, Yao Liu 0001, Zhenyu Li 0001, Yunhao Liu 0001
ICDCS3
2019 Demo: Mobile Gaming on Personal Computers with Direct Android Emulation
abstract
Playing Android games with Windows x86 PCs is now popular, and the common solution is to use mobile emulators built with the AOVB (Android-x86 On VirtualBox) architecture. Nevertheless, running heavy 3D Android games on AOVB incurs considerable overhead of full virtualization, thus often leading to unsatisfactory smoothness. To tackle this issue, we present DAOW, a commercial game-oriented Android emulator implementing the idea of direct Android emulation, which eliminates the overhead of full virtualization by providing foreign Android binaries with direct access to the domestic PC hardware through Windows kernel interfaces. In this demo, we will demonstrate that DAOW essentially outperforms traditional AOVB-based emulators in terms of running smoothness, game startup time, and memory usage.
Xinlei Yang, Zhenhua Li 0001, Yunhao Liu 0001, Guoyang Du, Ziwen Wu, Tianyin Xu, Ennan Zhai
MobiCom2