EDBT 2026 Demo / reviewers in the wild / expert
Ramy Amer
dblp:168/8487
· DBLP profile ↗
11ranked-venue papers
9as first author
3since 2021 · last 2022
0000-0002-7415-8914ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Computer networks · 9 · 9 first-author · 1 since 2021Artificial intelligence and machine learning · 1 · 1 since 2021Graphics, computer vision, multimedia, augmented reality and games · 1 · 1 since 2021
Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.
| Computer networks
3 papers |
Cellular and mobile networks · 47% Content delivery and video streaming · 25% Network optimization and economics · 15% |
Topics — the 11 heaviest of 11, each with the papers that count most for it
| Topic | Weight | Papers | Last | Evidence papers |
|---|---|---|---|---|
Content delivery and video streaming
caching |
1.0 | 2 | 2022 | Performance Analysis and Optimization of Cache-Assisted CoMP for Clustered D2D Networks · IEEE Trans. Mob. Comput. 2022 Optimized Caching and Spectrum Partitioning for D2D Enabled Cellular Systems With Clustered Devices · IEEE Trans. Commun. 2020 |
Cellular and mobile networks
device-to-device communication |
1.0 | 2 | 2022 | Performance Analysis and Optimization of Cache-Assisted CoMP for Clustered D2D Networks · IEEE Trans. Mob. Comput. 2022 Optimized Caching and Spectrum Partitioning for D2D Enabled Cellular Systems With Clustered Devices · IEEE Trans. Commun. 2020 |
Edge and fog computing › edge caching
probabilistic caching |
0.6 | 1 | 2022 | Performance Analysis and Optimization of Cache-Assisted CoMP for Clustered D2D Networks · IEEE Trans. Mob. Comput. 2022 |
Cellular and mobile networks › mobile networks
cellular-connected UAV |
0.4 | 1 | 2020 | Mobility in the Sky: Performance and Mobility Analysis for Cellular-Connected UAVs · IEEE Trans. Commun. 2020 |
Cellular and mobile networks
coordinated multipoint |
0.4 | 1 | 2020 | Mobility in the Sky: Performance and Mobility Analysis for Cellular-Connected UAVs · IEEE Trans. Commun. 2020 |
Cellular and mobile networks › mobility management
handover |
0.4 | 1 | 2020 | Mobility in the Sky: Performance and Mobility Analysis for Cellular-Connected UAVs · IEEE Trans. Commun. 2020 |
Cellular and mobile networks
mobility management |
0.4 | 1 | 2020 | Mobility in the Sky: Performance and Mobility Analysis for Cellular-Connected UAVs · IEEE Trans. Commun. 2020 |
Content delivery and video streaming › caching
proactive caching |
0.4 | 1 | 2020 | Optimized Caching and Spectrum Partitioning for D2D Enabled Cellular Systems With Clustered Devices · IEEE Trans. Commun. 2020 |
Network optimization and economics
resource allocation |
0.4 | 1 | 2020 | Optimized Caching and Spectrum Partitioning for D2D Enabled Cellular Systems With Clustered Devices · IEEE Trans. Commun. 2020 |
Network optimization and economics › resource allocation › spectrum allocation
spectrum partitioning |
0.4 | 1 | 2020 | Optimized Caching and Spectrum Partitioning for D2D Enabled Cellular Systems With Clustered Devices · IEEE Trans. Commun. 2020 |
Network performance modeling
stochastic geometry modeling |
0.2 | 1 | 2022 | Performance Analysis and Optimization of Cache-Assisted CoMP for Clustered D2D Networks · IEEE Trans. Mob. Comput. 2022 |
Methods — techniques the papers use, named apart from their topics
stochastic geometry · 1.4optimization · 0.6block coordinate descent · 0.4
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2022 | Performance Analysis and Optimization of Cache-Assisted CoMP for Clustered D2D NetworksabstractCaching at mobile devices and leveraging cooperative device-to-device (D2D) communications are two promising approaches to support massive content delivery over wireless networks while mitigating the effects of interference. To show the impact of cooperative communication on the performance of cache-enabled D2D networks, the notion of device clustering must be factored in to convey a realistic description of the network performance. In this regard, this paper develops a novel mathematical model, based on stochastic geometry and an optimization framework for cache-assisted coordinated multi-point (CoMP) transmissions with clustered devices. Devices are spatially distributed into disjoint clusters and are assumed to have a surplus memory to cache files from a known library, following a random probabilistic caching scheme. Desired contents that are not self-cached can be obtained via D2D CoMP transmissions from neighboring devices or, as a last resort, from the network. For this model, we analytically characterize the offloading gain and rate coverage probability as functions of the system parameters. An optimal caching strategy is then defined as the content placement scheme that maximizes the offloading gain. For a tractable optimization framework, we pursue two separate approaches to obtain a lower bound and a provably accurate approximation of the offloading gain, which allows us to obtain optimized caching strategies. Remarkably, if we replace the obtained expression for offloading gain with its lower bound, we can find a suboptimal caching strategy that is not only described via analytical formulas but can also show an improvement over the state-of-the-art caching schemes. Results reveal that cooperative transmission becomes more appealing in denser D2D caching networks and adverse interference conditions, which is the case of the imminent Internet of Things (IoT) and ns era. Ramy Amer, Hesham ElSawy, Jacek Kibilda, M. Majid Butt, Nicola Marchetti |
IEEE Trans. Mob. Comput. | 1 |
| 2021 | A Blockchain-Based Energy Trading Scheme for Electric VehiclesabstractAn energy-trading system is essential for the successful integration of Electric vehicles (EVs) into the smart grid. Existing systems merely focus on making optimal decisions while others depend on anonymization to achieve EVs drivers' privacy which is not enough because they can be identified from visited locations. In this paper, leveraging blockchain technology, we propose a privacy-preserving charging-station-to-vehicle (CS2V) energy trading scheme. To preserve privacy, EVs are anonymous, however, a malicious EV may abuse the anonymity to launch Sybil attacks by pretending as multiple non-exiting EVs to launch powerful attacks such as Denial of Service (DoS) by submitting multiple reservations/offers without committing to them, to prevent other EVs from charging and make the trading system unreliable. To thwart the Sybil attacks, we use a common prefix linkable anonymous authentication scheme, so that if an EV submits multiple reservations/offers at the same timeslot, the blockchain can identify such submissions. To further protect the privacy of EV drivers, we introduce an anonymous and efficient blockchain-based payment system that cannot link individual drivers to specific charging locations. Our experimental results indicate that our schemes are secure and privacy-preserving with low communication and computation overheads. Mohamed Baza, Ramy Amer, Amar A. Rasheed, Gautam Srivastava 0001, Mohamed Mahmoud 0001, Waleed Alasmary |
CCNC | 2 |
| 2021 | On the Assessment of Robustness of Telemedicine Applications against Adversarial Machine Learning Attacks
Ibrahim Yilmaz, Mohamed Baza, Ramy Amer, Amar A. Rasheed, Fathi H. Amsaad 0001, Rasha Morsi |
IEA/AIE (1) | 3 |
| 2020 | Performance Analysis of Mobile Cellular-Connected Drones under Practical Antenna ConfigurationsabstractProviding seamless connectivity to unmanned aerial vehicle user equipment (UAV-UE) is very challenging due to the encountered line-of-sight interference and reduced gains of down-tilted base station (BS) antennas. For instance, as the altitude of UAV-UEs increases, their cell association and handover procedure become driven by the side-lobes of the BS antennas. In this paper, the performance of cellular-connected UAV-UEs is studied under 3D practical antenna configurations. Two scenarios are studied: scenarios with static, hovering UAV-UEs and scenarios with mobile UAV-UEs. For both scenarios, the UAV-UE coverage probability is characterized as a function of the system parameters. The effects of the number of antenna elements on the UAV-UE coverage probability and handover rate of mobile UAV-UEs are then investigated. Results reveal that the UAV-UE coverage probability under a practical antenna pattern is worse than that under a simple antenna model. Moreover, vertically-mobile UAV-UEs are susceptible to attitude handover due to consecutive crossings of the nulls and peaks of the antenna side-lobes. Ramy Amer, Walid Saad 0001, Boris Galkin, Nicola Marchetti |
ICC | 1 |
| 2020 | Optimized Caching and Spectrum Partitioning for D2D Enabled Cellular Systems With Clustered DevicesabstractCaching at mobile devices and leveraging device-to-device (D2D) communication are two promising approaches to support massive content delivery over wireless networks. The analysis of cache-enabled wireless networks is usually carried out by assuming that devices are uniformly distributed, however, in social networks, mobile devices are intrinsically grouped into disjoint clusters. In this regards, this paper proposes a spatiotemporal mathematical model that tracks the service requests arrivals and account for the clustered devices geometry. Two kinds of devices are assumed, particularly, content clients and content providers. Content providers are assumed to have a surplus memory which is exploited to proactively cache contents from a known library, following a random probabilistic caching scheme. Content clients can retrieve a requested content from the nearest content provider in their proximity (cluster), or, as a last resort, the base station (BS). The developed spatiotemporal model is leveraged to formulate a joint optimization problem of the content caching and spectrum partitioning in order to minimize the average service delay. Due to the high complexity of the optimization problem, the caching and spectrum partitioning problems are decoupled and solved iteratively using the block coordinate descent (BCD) optimization technique. To this end, an optimal and suboptimal solutions are obtained for the bandwidth partitioning and probabilistic caching subproblems, respectively. Numerical results highlight the superiority of the proposed scheme over conventional caching schemes under equal and optimized bandwidth allocations. Particularly, it is shown that the average service delay is reduced by nearly 100% and 350%, compared to the Zipf and uniform caching schemes under equal bandwidth allocations, respectively. Ramy Amer, Hesham ElSawy, M. Majid Butt, Eduard A. Jorswieck, Mehdi Bennis, Nicola Marchetti |
IEEE Trans. Commun. | 1 |
| 2020 | Mobility in the Sky: Performance and Mobility Analysis for Cellular-Connected UAVsabstractProviding connectivity to unmanned aerial vehicle-user equipment (UAV-UE), such as drones or flying taxis, is a major challenge for tomorrow's cellular systems. In this paper, the use of coordinated multi-point (CoMP) transmission for providing seamless connectivity to UAV-UEs is investigated. In particular, a network of clustered ground base stations (BSs) that cooperatively serve a number of UAV-UEs is considered. Two scenarios are studied: scenarios with static, hovering UAV-UEs and scenarios with mobile UAV-UEs. Under a maximum ratio transmission, a novel framework is developed and leveraged to derive upper and lower bounds on the UAV-UE coverage probability for both scenarios. Using the derived results, the effects of various system parameters such as collaboration distance, UAV-UE altitude, and UAV-UE speed on the achievable performance are studied. Results reveal that, for both static and mobile UAV-UEs, when the BS antennas are tilted downwards, the coverage probability of a high-altitude UAV-UE is upper bounded by that of ground user equipments (UEs) regardless of the transmission scheme. Moreover, for low signal-to-interference-ratio thresholds, it is shown that CoMP transmission can improve the coverage probability of UAV-UEs, e.g., from 28% under the nearest association scheme to 60% for an average of 2.5 collaborating BSs. Meanwhile, key results on mobile UAV-UEs unveil that not only the spatial displacements of UAV-UEs but also their vertical motions affect their handover rate and coverage probability. In particular, UAV-UEs that have frequent vertical movements and high direction switch rates are expected to have low handover probability and handover rate. Finally, the effect of the UAV-UE vertical movements on its coverage probability is marginal if the UAV-UE retains the same mean altitude. Ramy Amer, Walid Saad 0001, Nicola Marchetti |
IEEE Trans. Commun. | 1 |
| 2019 | Cooperative Transmission and Probabilistic Caching for Clustered D2D NetworksabstractIn this paper, we aim at maximizing the offloading gain for a clustered cache-enabled device-to-device (D2D) network whose devices adopt probabilistic caching and cooperative transmission. Devices with surplus memory probabilistically cache a content from a known library. A requested content is either brought from the device's local cache, cooperatively transmitted from catering devices, or downloaded from the network. For this network, we derive a closed-form expression for the offloading gain and formulate the offloading maximization problem. In order to simplify the objective function and obtain a tractable expression, we derive a lower bound on the offloading gain, for which a suboptimal solution is obtained when considering a special case. Results reveal that the obtained suboptimal solution can achieve up to 12% increase in the offloading gain compared to the Zipf's caching technique. Ramy Amer, Hesham ElSawy, Jacek Kibilda, M. Majid Butt, Nicola Marchetti |
WCNC | 1 |
| 2019 | Caching to the Sky: Performance Analysis of Cache-Assisted CoMP for Cellular-Connected UAVsabstractProviding connectivity to aerial users, such as cellular-connected unmanned aerial vehicles (UAVs) or flying taxis, is a key challenge for tomorrow's cellular systems. In this paper, the use of coordinated multi-point (CoMP) transmission along with caching for providing seamless connectivity to aerial users is investigated. In particular, a network of clustered cache-enabled small base stations (SBSs) serving aerial users is considered in which a requested content by an aerial user is cooperatively transmitted from collaborative ground SBSs. For this network, a novel upper bound expression on the coverage probability is derived as a function of the system parameters. The effects of various system parameters such as collaboration distance and content availability on the achievable performance are then investigated. Results reveal that, when the antennas of the SBSs are tilted downwards, the coverage probability of a high-altitude aerial user is upper bounded by that of a ground user regardless of the transmission scheme. Moreover, it is shown that for a low signal-to-interference-ratio (SIR) threshold, CoMP transmission improves the coverage probability for aerial users from 10% to 70% under a collaboration distance of 200 m. Ramy Amer, Walid Saad 0001, Hesham ElSawy, M. Majid Butt, Nicola Marchetti |
WCNC | 1 |
| 2018 | On Minimizing Energy Consumption for D2D Clustered Caching NetworksabstractWe formulate and solve the energy minimization problem for a clustered device-to-device (D2D) network with cache-enabled mobile devices. Devices are distributed according to a Poisson cluster process (PCP) and are assumed to have a surplus memory which is exploited to proactively cache files from a library. Devices can retrieve the requested files from their caches, from neighboring devices in their proximity (cluster), or from the base station as a last resort. We minimize the energy consumption of the proposed network under a random probabilistic caching scheme, where files are independently cached according to a specific probability distribution. A closed form expression for the D2D coverage probability is obtained. The energy consumption problem is then formulated as a function of the caching distribution, and the optimal probabilistic caching distribution is obtained. Results reveal that the proposed caching distribution reduces energy consumption up to 33% as compared to caching popular files scheme. Ramy Amer, M. Majid Butt, Hesham ElSawy, Mehdi Bennis, Jacek Kibilda, Nicola Marchetti |
GLOBECOM | 1 |
| 2018 | Inter-Cluster Cooperation for Wireless D2D Caching NetworksabstractProactive wireless caching and device to device (D2D) communication have emerged as promising techniques for enhancing users' quality of service and network performance. In this paper, we propose a new architecture for D2D caching with inter-cluster cooperation. We study a cellular network in which users cache popular files and share them with other users either in their proximity via D2D communication or with remote users using cellular transmission. We characterize the network average delay per request from a queuing perspective. Specifically, we formulate the delay minimization problem and show that it is NP-hard. Furthermore, we prove that the delay minimization problem is equivalent to the minimization of a non-increasing monotone supermodular function subject to a uniform partition matroid constraint. A computationally efficient greedy algorithm is proposed which is proven to be locally optimal within a factor (1- e-1) ≈ 0.63 of the optimum. We analyze the average per request throughput for different caching schemes and conduct the scaling analysis for the average sum throughput. We show how throughput scaling depends on video content popularity when the number of files grows asymptotically large. Simulation results show a delay reduction of 45% to 80% compared to a D2D caching system without inter-cluster cooperation. Ramy Amer, M. Majid Butt, Mehdi Bennis, Nicola Marchetti |
IEEE Trans. Wirel. Commun. | 1 |
| 2017 | Delay Analysis for Wireless D2D Caching with Inter-Cluster CooperationabstractProactive wireless caching and D2D communication have emerged as promising techniques for enhancing users' quality of service and network performance. In this paper, we propose a new architecture for D2D caching with inter- cluster cooperation. We study a cellular network in which users cache popular files and share them with other users either in their proximity via D2D communication or with remote users using cellular transmission. We characterize the network average delay per request from a queuing perspective. Specifically, we formulate the delay minimization problem and show that it is NP-hard. Furthermore, we prove that the delay minimization problem is equivalent to minimization of a non-increasing monotone supermodular function subject to a partition matroid constraint. A computationally efficient greedy algorithm is proposed which is proven to be locally optimal within a factor 2 of the optimum. Simulation results show more than 45% delay reduction compared to a D2D caching system without inter-cluster cooperation. Ramy Amer, M. Majid Butt, Mehdi Bennis, Nicola Marchetti |
GLOBECOM | 1 |