Zhuoran Ma 0001

dblp:210/6243-1 · DBLP profile ↗
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6ranked-venue papers
3as first author
6since 2021 · last 2026
0009-0008-7108-4164ORCID · conflict

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

Computer networks · 6 · 3 first-author · 6 since 2021
YearPublicationVenuePosition
2026 SBA-Route: Domain-Based Routing for Scalable and Low-Latency 5G Distributed Control Planes
Zhuoran Ma 0001, Xin Wang 0001, Shiyi Liu 0007, Kun Xie 0001, Gaogang Xie
IWQoS1
2026 SigBooster: Enabling Low-Latency and Flexible RAN-CN Signaling with Metadata-Aware Parsing
Shiyi Liu 0007, Yanbiao Li 0001, Xin Wang 0001, Kaifei Peng, Xinyi Zhang 0004, Chenhui Yu, Zhuoran Ma 0001, Gaogang Xie
WoWMoM7
2026 H2-NRF: A high-performance and evolvable NRF with hierarchical indexing and minimal-overhead profile handling
Zhuoran Ma 0001, Yanbiao Li 0001, Xin Wang 0001, Xinyi Zhang 0004, Shiyi Liu 0007, Kun Xie 0001, Gaogang Xie
Comput. Networks1
2025 H-NRF: A High-performance and Evolutive NRF Framework for Large-scale Mobile Core Network
Zhuoran Ma 0001, Yanbiao Li 0001, Xin Wang 0001, Xinyi Zhang 0004, Shiyi Liu 0007, Kun Xie 0001, Gaogang Xie
APNet1
2025 Demystifying the Mobile Control Plane Characteristics for Ubiquitous Connectivity
abstract
The evolution of mobile networks toward ubiquitous connectivity envisioned by International Mobile Telecommunications-2030 has caused a surge in control plane traffic. A deep understanding of the control plane's internal characteristics and mechanisms is crucial for delivering optimal services. However, existing measurements often neglect the control plane or treat it as an opaque box, focusing on overall performance instead of its intrinsic characteristics.
Shiyi Liu 0007, Yanbiao Li 0001, Xin Wang 0001, Xinyi Zhang 0004, Zhuoran Ma 0001, Haitao Liu 0006, Gaogang Xie
IMC5
2022 The Hanging ROA: A Secure and Scalable Encoding Scheme for Route Origin Authorization
abstract
On top of the Resource Public Key Infrastructure (RPKI), the Route Origin Authorization (ROA) creates a cryptographically verifiable binding of an autonomous system to a set of IP prefixes it is authorized to originate. By their design, ROAs can protect the inter-domain routing system against prefix and sub-prefix hijacks. However, inappropriate configurations bring in vulnerabilities to other types of routing security attacks. As such, the state-of-the-art approach implements the minimal-ROA principle, eliminating the risk of using ROAs at the cost of system scalability. This paper proposes the hanging ROA, a novel bitmap-based encoding scheme for ROAs, that not only ensures strong security, but also significantly improves system scalability. According to the performance evaluation with real-world data sets, the hanging ROA outperforms the state-of-the-art approach 2.4 times in terms of the compression ratio, and it can reduce the cost of a router to synchronize all validated ROA payloads by 44.5% ~ 64.7%.
Yanbiao Li 0001, Yinbo Xu, Zhuoran Ma 0001, Gaogang Xie
INFOCOM5