Delia Ciullo

dblp:18/871 · DBLP profile ↗
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15ranked-venue papers
13as first author
0since 2021 · last 2019
—ORCID · none

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

Computer networks · 10 · 8 first-authorSystems, architecture and hardware · 2 · 2 first-authorGraphics, computer vision, multimedia, augmented reality and games · 1 · 1 first-authorTheory of computation · 1 · 1 first-author

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
9 papers
Content delivery and video streaming · 58% Wireless networking · 18% Network performance modeling · 16%

Topics — the 16 heaviest of 17, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Content delivery and video streaming
video-on-demand
1.062015
How Much Can Large-Scale Video-on-Demand Benefit From Users' Cooperation? · IEEE/ACM Trans. Netw. 2015
Peer-Assisted VoD Systems: An Efficient Modeling Framework · IEEE Trans. Parallel Distributed Syst. 2014
Asymptotic Properties of Sequential Streaming Leveraging Users' Cooperation · IEEE Trans. Inf. Theory 2013
Content delivery and video streaming › video-on-demand
peer-assisted video-on-demand
0.952015
How Much Can Large-Scale Video-on-Demand Benefit From Users' Cooperation? · IEEE/ACM Trans. Netw. 2015
Peer-Assisted VoD Systems: An Efficient Modeling Framework · IEEE Trans. Parallel Distributed Syst. 2014
How much can large-scale Video-on-Demand benefit from users' cooperation? · INFOCOM 2013
Network performance modeling
scaling laws
0.322013
How much can large-scale Video-on-Demand benefit from users' cooperation? · INFOCOM 2013
Impact of Correlated Mobility on Delay-Throughput Performance in Mobile Ad-Hoc Networks · INFOCOM 2010
Wireless networking › mobility models
correlated mobility
0.222011
Impact of Correlated Mobility on Delay-Throughput Performance in Mobile Ad Hoc Networks · IEEE/ACM Trans. Netw. 2011
Impact of Correlated Mobility on Delay-Throughput Performance in Mobile Ad-Hoc Networks · INFOCOM 2010
Wireless networking
mobile ad hoc networks
0.222011
Impact of Correlated Mobility on Delay-Throughput Performance in Mobile Ad Hoc Networks · IEEE/ACM Trans. Netw. 2011
Impact of Correlated Mobility on Delay-Throughput Performance in Mobile Ad-Hoc Networks · INFOCOM 2010
Content delivery and video streaming
cooperative video streaming
0.212013
Asymptotic Properties of Sequential Streaming Leveraging Users' Cooperation · IEEE Trans. Inf. Theory 2013
Network performance modeling › stochastic analysis
stochastic fluid flow model
0.212013
Asymptotic Properties of Sequential Streaming Leveraging Users' Cooperation · IEEE Trans. Inf. Theory 2013
Optical networks
non-stationary traffic
0.112012
Performance analysis of non-stationary peer-assisted VoD systems · INFOCOM 2012
Wireless networking › network capacity
throughput and delay scaling
0.112011
Impact of Correlated Mobility on Delay-Throughput Performance in Mobile Ad Hoc Networks · IEEE/ACM Trans. Netw. 2011
Wireless networking › mobility
node mobility
0.112010
Impact of Correlated Mobility on Delay-Throughput Performance in Mobile Ad-Hoc Networks · INFOCOM 2010
Content delivery and video streaming › peer-to-peer streaming
peer-to-peer live streaming
0.112010
Network Awareness of P2P Live Streaming Applications: A Measurement Study · IEEE Trans. Multim. 2010
Network performance modeling › tradeoff analysis
throughput-delay tradeoff
0.112010
Impact of Correlated Mobility on Delay-Throughput Performance in Mobile Ad-Hoc Networks · INFOCOM 2010
Content delivery and video streaming
peer-to-peer content distribution
0.112015
How Much Can Large-Scale Video-on-Demand Benefit From Users' Cooperation? · IEEE/ACM Trans. Netw. 2015
Network performance modeling › queueing analysis
fluid model
0.112014
Peer-Assisted VoD Systems: An Efficient Modeling Framework · IEEE Trans. Parallel Distributed Syst. 2014
Physical-layer communications
asymptotic throughput analysis
0.012011
Impact of Correlated Mobility on Delay-Throughput Performance in Mobile Ad Hoc Networks · IEEE/ACM Trans. Netw. 2011
Routing and switching › inter-domain routing
autonomous system
0.012010
Network Awareness of P2P Live Streaming Applications: A Measurement Study · IEEE Trans. Multim. 2010

Methods — techniques the papers use, named apart from their topics

analytical modeling · 0.4scaling law analysis · 0.3stochastic modeling · 0.3fluid model · 0.3fluid modeling · 0.2stochastic fluid framework · 0.2poisson process modeling · 0.2stochastic fluid model · 0.1resource allocation · 0.1analytical bounds · 0.1
YearPublicationVenuePosition
2019 Sizing Up User Traffic: Flow-based Mobile Data Offloading Over WiFi
abstract
We propose a smart offloading policy that dynamically assigns data flows to the WiFi and cellular interfaces, so as to minimize a given cost function (related to energy consumption and cellular plan usage), while keeping the average per-flow delay bounded. The basic insight of the proposed Threshold Policy is to assign larger flows to the network that provides the best rate (often WiFi), and smaller flows to the other, since energy is generally related to the time needed to send/receive data. However, choosing the size cutoff optimally must also consider load-balancing and queueing aspects, WiFi availability, flow size statistics, and user/application preferences. We validate our model against simulations, and show that our policy outperforms other standard or smart policies, achieving considerably better energy-delay trade-offs, while only offloading a small percentage of (large)flows. Initial measurements performed on an Android-based offloading prototype further support our findings.
Delia Ciullo, Thrasyvoulos Spyropoulos, Navid Nikaein, Bruno Jechoux, Giannis Sarantidis
WOWMOM1
2015 How Much Can Large-Scale Video-on-Demand Benefit From Users' Cooperation?
abstract
We propose an analytical framework to tightly characterize the scaling laws for the additional bandwidth that servers must supply to guarantee perfect service in peer-assisted Video-on-Demand systems, taking into account essential aspects such as peer churn, bandwidth heterogeneity, and Zipf-like video popularity. Our results reveal that the catalog size and the content popularity distribution have a huge effect on the system performance. We show that users' cooperation can effectively reduce the servers' burden for a wide range of system parameters, confirming to be an attractive solution to limit the costs incurred by content providers as the system scales to large populations of users.
Delia Ciullo, Valentina Martina, Michele Garetto, Emilio Leonardi
IEEE/ACM Trans. Netw.1
2014 Peer-Assisted VoD Systems: An Efficient Modeling Framework
abstract
We analyze a peer-assisted Video-on-Demand (VoD) system in which users contribute their upload bandwidth to the redistribution of a video that they are downloading or that they have cached locally. Our target is to characterize the additional bandwidth that servers must supply to immediately satisfy all requests to watch a given video. We develop an approximate fluid model to compute the required server bandwidth in the sequential delivery case, as well as in controlled nonsequential swarms. Our approach is able to capture several stochastic effects related to peer churn, upload bandwidth heterogeneity, and nonstationary traffic conditions, which have not been documented or analyzed before. Finally, we provide important hints for the design of efficient peer-assisted VoD systems under server capacity constraints.
Delia Ciullo, Valentina Martina, Michele Garetto, Emilio Leonardi, Giovanni Luca Torrisi
IEEE Trans. Parallel Distributed Syst.1
2013 How much can large-scale Video-on-Demand benefit from users' cooperation?
abstract
We propose an analytical framework to tightly characterize the scaling laws for the additional bandwidth that servers must supply to guarantee perfect service in peer-assisted Video-on-Demand systems, taking into account essential aspects such as peer churn, bandwidth heterogeneity, and Zipf-like video popularity. Our results reveal that the catalog size and the content popularity distribution have a huge effect on the system performance. We show that users' cooperation can effectively reduce the servers' burden for a wide range of system parameters, confirming to be an attractive solution to limit the costs incurred by content providers as the system scales to large populations of users.
Delia Ciullo, Valentina Martina, Michele Garetto, Emilio Leonardi
INFOCOM1
2013 Modeling sleep mode gains in energy-aware networks
Luca Chiaraviglio, Delia Ciullo, Marco Mellia, Michela Meo
Comput. Networks2
2013 On the effectiveness of single and multiple base station sleep modes in cellular networks
Marco Ajmone Marsan, Luca Chiaraviglio, Delia Ciullo, Michela Meo
Comput. Networks3
2013 Asymptotic Properties of Sequential Streaming Leveraging Users' Cooperation
abstract
We consider a communication system in which a given digital content has to be delivered sequentially at constant rate to a set of users who asynchronously request it according to a Poisson process. Users can retrieve data: 1) from one or more sources that statically store the entire content; and 2) from users who have previously requested the content, and contribute (for limited time) a random amount of upload bandwidth to the system. We propose a stochastic fluid framework that allows characterizing the aggregate streaming rate necessary at the sources to satisfy all active requests. In particular, we establish the conditions under which the system becomes asymptotically scalable as the number of users grows. Our theoretical results apply to increasingly popular video-on-demand systems exploiting users' cooperation.
Delia Ciullo, Valentina Martina, Michele Garetto, Emilio Leonardi, Giovanni Luca Torrisi
IEEE Trans. Inf. Theory1
2012 Stochastic analysis of self-sustainability in peer-assisted VoD systems
abstract
We consider a peer-assisted Video-on-demand system, in which video distribution is supported both by peers caching the whole video and by peers concurrently downloading it. We propose a stochastic fluid framework that allows to characterize the additional bandwidth requested from the servers to satisfy all users watching a given video. We obtain analytical upper bounds to the server bandwidth needed in the case in which users download the video content sequentially. We also present a methodology to obtain exact solutions for special cases of peer upload bandwidth distribution. Our bounds permit to tightly characterize the performance of peer-assisted VoD systems as the number of users increases, for both sequential and non-sequential delivery schemes. In particular, we rigorously prove that the simple sequential scheme is asymptotically optimal both in the bandwidth surplus and in the bandwidth deficit mode, and that peer-assisted systems become totally self-sustaining in the surplus mode as the number of users grows large.
Delia Ciullo, Valentina Martina, Michele Garetto, Emilio Leonardi, Giovanni Luca Torrisi
INFOCOM1
2012 Performance analysis of non-stationary peer-assisted VoD systems
abstract
We analyze a peer-assisted Video-on-Demand system in which users contribute their upload bandwidth to the redistribution of a video that they are downloading or that they have cached locally. Our target is to characterize the additional bandwidth that servers must supply to immediately satisfy all requests to watch a given video. We develop an approximate fluid model to compute the required server bandwidth in the sequential delivery case. Our approach is able to capture several stochastic effects related to peer churn, upload bandwidth heterogeneity, non-stationary traffic conditions, which have not been documented or analyzed before. We provide an analytical methodology to design efficient peer-assisted VoD systems and optimal resource allocation strategies.
Delia Ciullo, Valentina Martina, Michele Garetto, Emilio Leonardi, Giovanni Luca Torrisi
INFOCOM1
2011 Impact of Correlated Mobility on Delay-Throughput Performance in Mobile Ad Hoc Networks
abstract
We extend the analysis of the scaling laws of wireless ad hoc networks to the case of correlated nodes movements, which are commonly found in real mobility processes. We consider a simple version of the Reference Point Group Mobility model, in which nodes belonging to the same group are constrained to lie in a disc area, whose center moves uniformly across the network according to the i.i.d. model. We assume fast mobility conditions and take as a primary goal the maximization of per-node throughput. We discover that correlated node movements have a huge impact on asymptotic throughput and delay and can sometimes lead to better performance than the one achievable under independent nodes movements.
Delia Ciullo, Valentina Martina, Michele Garetto, Emilio Leonardi
IEEE/ACM Trans. Netw.1
2010 Impact of Correlated Mobility on Delay-Throughput Performance in Mobile Ad-Hoc Networks
abstract
We extend the analysis of the scaling laws of wireless ad hoc networks to the case of correlated nodes movements, which are commonly found in real mobility processes. We consider a simple version of the Reference Point Group Mobility model, in which nodes belonging to the same group are constrained to lie in a disc area, whose center moves uniformly across the network according to the i.i.d. model. We assume fast mobility conditions, and take as primary goal the maximization of per-node throughput. We discover that correlated node movements have huge impact on asymptotic throughput and delay, and can sometimes lead to better performance than the one achievable under independent nodes movements.
Delia Ciullo, Valentina Martina, Michele Garetto, Emilio Leonardi
INFOCOM1
2010 Minimizing transmission energy in sensor networks via trajectory control
Delia Ciullo, Güner D. Çelik, Eytan H. Modiano
WiOpt1
2010 Network Awareness of P2P Live Streaming Applications: A Measurement Study
abstract
Early P2P-TV systems have already attracted millions of users, and many new commercial solutions are entering this market. Little information is however available about how these systems work, due to their closed and proprietary design. In this paper, we present large scale experiments to compare three of the most successful P2P-TV systems, namely PPLive, SopCast and TVAnts. Our goal is to assess what level of "network awareness" has been embedded in the applications. We first define a general framework to quantify which network layer parameters leverage application choices, i.e., what parameters mainly drive the peer selection and data exchange. We then apply the methodology to a large dataset, collected during a number of experiments where we deployed about 40 peers in several European countries. From analysis of the dataset, we observe that TVAnts and PPLive exhibit a mild preference to exchange data among peers in the same autonomous system the peer belongs to, while this clustering effect is less intense in SopCast. However, no preference versus country, subnet or hop count is shown. Therefore, we believe that next-generation P2P live streaming applications definitively need to improve the level of network-awareness, so to better localize the traffic in the network and thus increase their network-friendliness as well.
Delia Ciullo, M.-A. Garcia da Rocha Neta, Ákos Horváth 0004, Emilio Leonardi, Marco Mellia, Dario Rossi 0001, Miklós Telek, Paolo Veglia
IEEE Trans. Multim.1
2009 Network awareness of P2P live streaming applications
abstract
Early P2P-TV systems have already attracted millions of users, and many new commercial solutions are entering this market. Little information is however available about how these systems work. In this paper we present large scale sets of experiments to compare three of the most successful P2P-TV systems, namely PPLive, SopCast and TVAnts. Our goal is to assess what level of "network awareness" has been embedded in the applications, i.e., what parameters mainly drive the peer selection and data exchange. By using a general framework that can be extended to other systems and metrics, we show that all applications largely base their choices on the peer bandwidth, i.e., they prefer high-bandwidth users, which is rather intuitive. Moreover, TVAnts and PPLive exhibits also a preference to exchange data among peers in the same autonomous system the peer belongs to. However, no evidence about preference versus peers in the same subnet or that are closer to the considered peer emerges. We believe that next-generation P2P live streaming applications definitively need to improve the level of network-awareness, so to better localize the traffic in the network and thus increase their network-friendliness as well.
Delia Ciullo, M.-A. Garcia da Rocha Neta, Ákos Horváth 0004, Emilio Leonardi, Marco Mellia, Dario Rossi 0001, Miklós Telek, Paolo Veglia
IPDPS1
2008 Understanding P2P-TV Systems Through Real Measurements
abstract
In this paper, we consider two popular peer-to-peer TV (P2P-TV) systems: PPLive, one of the today most widely used P2P-TV systems, and Joost, a promising new generation application of which no previous measurement study has been considered. Besides the traditional measurements like the amount of generated traffic for signaling and data transmission, the novel contribution of the paper consists in investigating the content distribution mechanisms. In particular, we evaluate the characteristics of both data distribution and signaling process for the overlay network discovery and maintenance. By considering two or more clients in the same sub-network, we observe the capability of the system to exploit the locality of peers. We also explore how the system adapts to different network conditions. The methodology we develop allows also to identify periodic behavior of the application, highlighting bursts of both data and signaling traffic.
Delia Ciullo, Marco Mellia, Michela Meo, Emilio Leonardi
GLOBECOM1