VLDB 2026 Research / reviewers in the wild / expert
Eduard S. Sopin
dblp:151/5525
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11ranked-venue papers
6as first author
6since 2021 · last 2026
0000-0001-9082-2152ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Computer networks · 7 · 4 first-author · 6 since 2021Artificial intelligence and machine learning · 3 · 2 first-author
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | Maximizing Resource Usage in 5G/6G CIoT Systems With Diverse Uplink/Downlink TrafficabstractFuture 5G/6G cellular Internet of Things (CIoT) technologies need to be able to multiplex a number of traffic types having different arrival patterns, resource requirements, and directions. To this aim, the random access (RA) and data transmission (DT) phases in such technologies should be appropriately optimized. In this paper, we develop a computationally efficient and accurate model accounting for both RA and DT phases and the different nature of traffic types in uplink and downlink directions. We establish the stability criterion for the considered system and then utilize this model to optimize resources allocated to RA and DT phases under different traffic loads in uplink and downlink directions. We show that the proposed model provides accurate assessment of the delay at both RA and DT phases with an error of less than 1%, while its fully analytical structure makes it computationally efficient. Our results also indicate that modern CIoT system are not optimized for different load conditions and even a 5 % decrease in the amount of resources allocated to RA or DT phase changes the supported packet arrival rate by up to 80 %. The model developed in this paper allows optimal tuning RA and DT phases for any offered load conditions in the uplink and downlink directions. Eduard S. Sopin, Anastasia V. Daraseliya, Vyacheslav Begishev, Konstantin E. Samouylov, Yevgeni Koucheryavy |
IEEE Internet Things J. | 1 |
| 2025 | Improving fairness and utilization in 5G/6G mmWave/sub-THz systems via virtual queuing
Eduard S. Sopin, Anastasia V. Daraseliya, Vyacheslav Begishev, Konstantin E. Samouylov, Yevgeni Koucheryavy |
Comput. Networks | 1 |
| 2025 | Approximate model of the session service process for mmWave/sub-THz 5G/6G cellular systems
Eduard S. Sopin, Vyacheslav Begishev, Konstantin E. Samouylov |
Wirel. Networks | 1 |
| 2024 | User Persistence in 5G/6G mmWave/Sub-THz Systems With Blockage: Does It Pay Off?abstract5G New Radio (NR) millimeter wave (mmWave) and future sub-terahertz (sub-THz) 6G systems are designed for rate-greedy multimedia applications. Such applications often utilize rate adaptation allowing to vary the rate according to the network conditions. Unreliable nature of these bands subject to blockage may induce persistent user behavior resulting in repeated attempts (retrials) to continue the service. These effects may lead to the loss of sessions during the service and service provisioning at reduced rate. In this paper, by using the stochastic geometry and queuing theory, we characterize performance of adaptive rate-greedy applications at mmWave/sub-THz base stations. We consider user- and system-centric performance including new and ongoing session drop probabilities, resource utilization, and the amount of wasted resources. Our results show that the user persistence improves the new and ongoing session drop probabilities: making two retrials brings both down by$20-70$% while for fully persistent behavior the gain is 300%. The impact is more pronounced in underloaded system conditions. User persistence also increases the usage of system resources by$20-40$% and decreases the percentage of wasted resources by two/three times. However, these gains come at the expense of decreased successful session completion probability without retrials negatively affecting the overall user experience. Eduard S. Sopin, Dmitri Moltchanov, Alexander Maslov, Vyacheslav Begishev, Andrey K. Samuylov, Konstantin E. Samouylov, Yevgeni Koucheryavy |
IEEE Trans. Wirel. Commun. | 1 |
| 2022 | Performance Characterization and Traffic Protection in Street Multi-Band Millimeter-Wave and Microwave DeploymentsabstractTo alleviate the impact of outages caused by dynamic blockage of propagation paths in millimeter wave (mmWave) systems, 3GPP has proposed multi-connectivity operation, where user equipment (UE) maintains simultaneous links to both sub-6 GHz and mmWave BSs. We address one of the most challenging prospective deployments – multi-lane street deployment with intra- and inter-RAT multi-connectivity. By utilizing the mixture of analytical and simulation tools, we first characterize the outage characteristics at mmWave layer. These characteristics further serve as an input to the queuing model characterizing service performance of sub-6 GHz BS serving sub-6 GHz and temporarily offloaded mmWave sessions and implementing traffic protection strategies. Our numerical results show that the use of inter-RAT multi-connectivity to offload mmWave sessions decreases sub-6 GHz session rate multiple times while utilizing multi-connectivity at the mmWave layer allows to partially compensate it. Traffic “jam” road conditions affect the sub-6 GHz session rate reducing it by approximately 20% compared to “normal” road traffic conditions. Furthermore, reserving shares of resources to sub-6 GHz and mmWave traffic favors “heavy-weight” mmWave sessions. On the other hand, individual session resource allocation leads to fair performance. However, this option induces the trade-off between the attained rate and the session drop probability. Dmitri Moltchanov, Andrey K. Samuylov, Ekaterina Lisovskaya, Roman Kovalchukov, Vyacheslav Begishev, Eduard S. Sopin, Yulia Gaidamaka, Yevgeni Koucheryavy |
IEEE Trans. Wirel. Commun. | 6 |
| 2021 | Performance Analysis of Multi-Band Microwave and Millimeter-Wave Operation in 5G NR SystemsabstractBlockage of millimeter-wave (mmWave) radio propagation paths in dense mobile scenarios requires advanced techniques to preserve session continuity in 5G New Radio (NR) systems. In this work, we employ the tools of stochastic geometry and queuing theory as well as rely on 3GPP cluster-based propagation modeling to formulate a mathematical framework, which captures session-level service dynamics of user equipment (UE) that supports multi-band operation. Accordingly, the sub-6 GHz NR base station (BS) is used to temporarily serve the sessions with strict throughput requirements that experience an outage at the mmWave NR BSs. We derive user- and system-centric key performance indicators, including new and ongoing session drop probabilities as well as radio resource utilization. Our numerical results confirm that the use of microwave BSs to serve mmWave sessions is only feasible in light traffic conditions. Particularly, the presence of throughput-hungry mmWave traffic increases the session drop probability at the sub-6 GHz band as well as decreases its utilization. Further, the support of sub-6 GHz radio may not improve the mmWave BS resource utilization, as many mmWave sessions are dropped during their service as a consequence of frequent blockage-induced outage situations. Vyacheslav Begishev, Eduard S. Sopin, Dmitri Moltchanov, Rustam Pirmagomedov, Andrey K. Samuylov, Sergey Andreev 0001, Yevgeni Koucheryavy, Konstantin E. Samouylov |
IEEE Trans. Wirel. Commun. | 2 |
| 2020 | Handling Overflow Traffic in Millimeter Wave 5G NR Deployments using NR-U Technologyabstract5G millimeter wave (mmWave) New Radio (NR) base stations (BS) are expected to be deployed in areas with extremely high and drastically fluctuating traffic demands resulting in frequent quality-of-service violations in terms of the provided rate at the access interface, especially, during busy hour conditions. As a cost-efficient countermeasure we consider NR unlicensed (NRU) technology encompassing both NR and WiGiG at a single NR-U BS. To ultimate goal of this study is to determine the required density of these NR-U BSs in an area characterized by a certain density of NR and WiGiG users, where NR users may utilize WiGiG technology as long as their rate requirements are met. Joining the tools of stochastic geometry, queuing theory and Markov chains we characterize the sought metric of interest. We then report the dependency of eventual NR UE session loss probability that can be used to deduce the sought density of NR-U BSs as a function of system parameters. Among other conclusions, we reveal that the effect of the antenna array at NR part of NR-U BS is non-uniform and needs to be taken into account planning NR-U deployments. Anastasia V. Daraseliya, Maksym V. Korshykov, Eduard S. Sopin, Dmitri Moltchanov, Yevgeni Koucheryavy, Konstantin E. Samouylov |
PIMRC | 3 |
| 2019 | Approximate Analysis Of The Limited Resources Queuing System With Signals
Eduard S. Sopin, Kirill A. Ageev, Konstantin E. Samouylov |
ECMS | 1 |
| 2018 | Simulation Of The Limited Resources Queuing System For Performance Analysis Of Wireless Networks
Eduard S. Sopin, Kirill A. Ageev, Sergey Shorgin |
ECMS | 1 |
| 2017 | Modelling And Response Time Analysis For Web Browsing Under Interruptions In LTE Network
Evgeniy Mokrov, Eduard S. Sopin, Ekaterina V. Markova, Dmitry Poluektov, Irina A. Kochetkova, Pavel Masek, Jiri Hosek |
ECMS | 2 |
| 2016 | Experimental Evaluation of Dynamic Licensed Shared Access Operation in Live 3GPP LTE SystemabstractAs next-generation mobile networks are rapidly taking shape driven by the target standardization requirements and initial trial implementations, a range of accompanying technologies prepare to support them with more reliable wireless access and improved service provisioning. Among these are more advanced spectrum sharing options enabled by the emerging Licensed Shared Access (LSA) regulatory framework, which aims to efficiently employ the capacity of underutilized frequency bands in a controlled manner. The concept of LSA promises to equip network operators with the much needed additional spectrum on the secondary basis and thus brings changes to the existing cellular network management. Hence, additional research is in prompt demand to determine the required levels of Quality of Service (QoS) and service provisioning reliability, especially in cases of dynamic geographical and temporal LSA sharing. Motivated by this recent urge and having at our disposal a fully-functional 3GPP LTE cellular deployment, we have committed to implement and trial the principles of dynamic LSA-compatible spectrum management. This paper is our first disclosure on the comprehensive experimental evaluation of this promising technology. We expect that these unprecedented practical results together with the key lessons learned will become a valuable reference point for the subsequent integration of flexible LSA-based services, suitable for inter-operator and multi-tenant spectrum sharing. Pavel Masek, Evgeniy Mokrov, Alexander Pyattaev, Krystof Zeman, Aleksei A. Ponomarenko-Timofeev, Andrey K. Samuylov, Eduard S. Sopin, Jiri Hosek, Irina A. Kochetkova, Sergey Andreev 0001, Vit Novotny, Yevgeni Koucheryavy, Konstantin E. Samouylov |
GLOBECOM | 7 |