Yunzhe Ni

dblp:207/1795 · DBLP profile ↗
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8ranked-venue papers
3as first author
4since 2021 · last 2026
0009-0003-9417-3040ORCID · corroborated

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

Computer networks · 8 · 3 first-author · 4 since 2021
YearPublicationVenuePosition
2026 From Source to Solution: Tackling Packet Losses in Large-scale Cloud Gaming Systematically and Precisely
Jing Wang 0077, Yunzhe Ni, Nian Wen, Congcong Miao
NSDI3
2024 SMUFF: Towards Line Rate Wi-Fi Direct Transport with Orchestrated On-device Buffer Management
Chengke Wang, Hao Wang 0035, Yunzhe Ni, Feng Qian 0001, Chenren Xu
NSDI4
2023 POLYCORN: Data-driven Cross-layer Multipath Networking for High-speed Railway through Composable Schedulerlets
Yunzhe Ni, Feng Qian 0001, Taide Liu, Yihua Cheng, Zhiyao Ma, Jing Wang 0077, Gang Huang 0001, Xuanzhe Liu, Chenren Xu
NSDI1
2023 CellFusion: Multipath Vehicle-to-Cloud Video Streaming with Network Coding in the Wild
abstract
This paper presents CellFusion, a system designed for high-quality, real-time video streaming from vehicles to the cloud. It leverages an innovative blend of multipath QUIC transport and network coding. Surpassing the limitations of individual cellular carriers, CellFusion uses a unique last-mile overlay that integrates multiple cellular networks into a single, unified cloud connection. This integration is made possible through the use of in-vehicle Customer Premises Equipment (CPEs) and edge-cloud proxy servers.
Yunzhe Ni, Zhilong Zheng, Xianshang Lin, Fengyu Gao, Xuan Zeng 0002, Yirui Liu 0001, Senlang Du, Guang Yang 0006, Yuanchao Su, Dennis Cai, Hongqiang Harry Liu, Chenren Xu, Ennan Zhai
SIGCOMM1
2020 A First Look at Disconnection-Centric TCP Performance on High-Speed Railways
abstract
High-speed rail (HSR) systems potentially provide a more efficient way of door-to-door transportation than airplane. However, they also pose unprecedented challenges in delivering seamless Internet service for on-board passengers. In this paper, we conduct the first large-scale disconnection-centric measurement study of TCP performance over LTE on HSR. Our measurement targets the main HSR route in China operating at 300/350 km/h. We performed extensive data collection obtaining 378.3 GB data collected over 56639 km of trips. Leveraging such a unique dataset, we measure important performance metrics such as TCP goodput, latency and loss rate across different congestion control algorithm, mobile carrier, and different train speed. We further develop the LTE disconnection taxonomy, and conduct a in-depth correlation study between TCP stall and LTE disconnection. Our findings reveal the networking performance on today's HSR environment “in the wild”, as well as identify several root causes of performance inefficiencies, which together highlight the need to develop dedicated protocol mechanisms that are friendly to extreme mobility.
Chenren Xu, Jing Wang 0077, Zhiyao Ma, Yihua Cheng, Yunzhe Ni, Wangyang Li, Feng Qian 0001, Yuanjie Li
IEEE J. Sel. Areas Commun.5
2019 An Active-Passive Measurement Study of TCP Performance over LTE on High-speed Rails
abstract
High-speed rail (HSR) systems potentially provide a more efficient way of door-to-door transportation than airplane. However, they also pose unprecedented challenges in delivering seamless Internet service for on-board passengers. In this paper, we conduct a large-scale active-passive measurement study of TCP performance over LTE on HSR. Our measurement targets the HSR routes in China operating at above 300 km/h. We performed extensive data collection through both controlled setting and passive monitoring, obtaining 1732.9 GB data collected over 135719 km of trips. Leveraging such a unique dataset, we measure important performance metrics such as TCP goodput, latency, loss rate, as well as key characteristics of TCP flows, application breakdown, and users' behaviors. We further quantitatively study the impact of frequent cellular handover on HSR networking performance, and conduct in-depth examination of the performance of two widely deployed transport-layer protocols: TCP CUBIC and TCP BBR. Our findings reveal the performance of today's commercial HSR networks "in the wild'', as well as identify several performance inefficiencies, which motivate us to design a simple yet effective congestion control algorithm based on BBR to further boost the throughput by up to 36.5%. They together highlight the need to develop dedicated protocol mechanisms that are friendly to extreme mobility.
Jing Wang 0077, Yufan Zheng, Yunzhe Ni, Chenren Xu, Feng Qian 0001, Wangyang Li, Wantong Jiang, Yihua Cheng, Yuanjie Li, Xiufeng Xie
MobiCom3
2018 A Multipath Transport Multihoming Mobile Relay Architecture for High-speed Rails Networking
abstract
No abstract available.
Yunzhe Ni, Chenren Xu
MobiSys1
2017 PassiveVLC: Enabling Practical Visible Light Backscatter Communication for Battery-free IoT Applications
abstract
This paper investigates the feasibility of practical backscatter communication using visible light for battery-free IoT applications. Based on the idea of modulating the light retroreflection with a commercial LCD shutter, we effectively synthesize these off-the-shelf optical components into a sub- mW low power visible light passive transmitter along with a retroreflecting uplink design dedicated for power constrained mobile/IoT devices. On top of that, we design, implement and evaluate PassiveVLC, a novel visible light backscatter communication system. PassiveVLC system enables a battery-free tag device to perform passive communication with the illuminating LEDs over the same light carrier and thus offers several favorable features including battery-free, sniff-proof, and biologically friendly for human-centric use cases. Experimental results from our prototyped system show that PassiveVLC is flexible with tag orientation, robust to ambient lighting conditions, and can achieve up to 1 kbps uplink speed. Link budget analysis and two proof-of-concept applications are developed to demonstrate PassiveVLC's efficacy and practicality.
Xieyang Xu, Jackie Yang, Chenren Xu, Guobin Shen, Yunzhe Ni
MobiCom7