Guilherme Iecker Ricardo

dblp:220/3484 · DBLP profile ↗
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7ranked-venue papers
3as first author
6since 2021 · last 2025
0000-0002-1750-3777ORCID · verified

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

Computer networks · 7 · 3 first-author · 6 since 2021
YearPublicationVenuePosition
2025 E-MATRO: An Adaptive and Energy-Efficient Framework for Slicing within the O-RAN Architecture
André Cédric Bessala, Guilherme Iecker Ricardo, Gentian Jakllari
Networking2
2025 BlocBin: SLA-Compliant and Efficient RAN Slicing in Next-Generation Networks
Juliana Olubukola Ojo, Guilherme Iecker Ricardo, Gentian Jakllari
Networking2
2025 On flexible association and placement in disaggregated RAN designs
Hiba Hojeij, Guilherme Iecker Ricardo, Mahdi Sharara, Sahar Hoteit, Véronique Vèque, Stefano Secci
Comput. Commun.2
2021 Caching Heterogeneous Size Content in Small Cell Networks with CoMP Joint Transmissions
abstract
In 5G and beyond network architectures, operators and content providers base their content distribution strategies on small cell networks. On top of such networks, edge caching and Coordinated Multi-Point (CoMP) Joint Transmissions are used to improve performance. Online solutions for average delay minimization problem have been studied in the related literature, although only under the strong assumption that files have equal sizes. In this paper we aim to fill this gap and propose an online caching policy, qLRU-HS, that takes into account heterogeneous sizes and asymptotically converges to the optimal cache allocation under the Independent Reference Model. Our experiments confirm such convergence in practice and reveal that qLRU-HS outperforms other state-of-the-art solutions.
Guilherme Iecker Ricardo, Giovanni Neglia, Thrasyvoulos Spyropoulos
GLOBECOM1
2021 A Swiss Army Knife for Online Caching in Small Cell Networks
abstract
We consider a dense cellular network, in which a limited-size cache is available at every base station (BS). Coordinating content allocation across the different caches can lead to significant performance gains, but is a difficult problem even when full information about the network and the request process is available. In this paper we present $q$ LRU- $\Delta $ , a general-purpose online caching policy that can be tailored to optimize different performance metrics also in presence of coordinated multipoint transmission techniques. The policy requires neither direct communication among BSs, nor a priori knowledge of content popularity and, under stationary request processes, has provable performance guarantees.
Giovanni Neglia, Emilio Leonardi, Guilherme Iecker Ricardo, Thrasyvoulos Spyropoulos
IEEE/ACM Trans. Netw.3
2021 Caching Policies for Delay Minimization in Small Cell Networks With Coordinated Multi-Point Joint Transmissions
abstract
In 5G and beyond network architectures, operators and content providers base their content distribution strategies on Heterogeneous Networks, where macro and small cells are combined to offer better Quality of Service to wireless users. On top of such networks, edge caching and Coordinated Multi-Point (CoMP) joint transmissions are used to further improve performance. In this paper, we address the average delay minimization problem by first formulating it as a static optimization problem. Even though the problem is NP-hard we are able to solve it via an efficient algorithm that guarantees a 1/2-approximation ratio. We then proceed to propose two fully distributed and dynamic caching policies for the same problem. The first one asymptotically converges to the static optimal solution under the Independent Reference Model (IRM). The second one provides better results in practice under real (non-stationary) request processes. Our online policies outperform existing dynamic solutions that are PHY-unaware.
Guilherme Iecker Ricardo, Alina Tuholukova, Giovanni Neglia, Thrasyvoulos Spyropoulos
IEEE/ACM Trans. Netw.1
2020 Caching Policies for Delay Minimization in Small Cell Networks with Joint Transmissions
abstract
In 5G and beyond network architectures, operators and content providers base their content distribution strategies on Heterogeneous Networks, where macro and small(er) cells are combined to offer better Quality of Service (QoS) to wireless users. On top of such networks, edge caching and Coordinated Multi-Point (CoMP) transmissions are used to further improve performance. The problem of optimally utilizing the cache space in dense and heterogeneous cell networks has been extensively studied under the name of “FemtoCaching.” However, related literature usually assumes relatively simple physical layer (PHY) setups and known or stationary content popularity. In this paper, we address these issues by proposing a class of fully distributed and dynamic caching algorithms that take advantage of CoMP capabilities towards minimizing PHY-aware metrics, such as end-to-end (E2E) delay. Our policies outperform existing dynamic solutions that are PHY-unaware, under both synthetic and real (non-stationary) request processes, and converge to efficient centralized solutions, in static setups.
Guilherme Iecker Ricardo, Giovanni Neglia, Thrasyvoulos Spyropoulos
ICC1